ИНФОРМАЦИОННЫЙ БЮЛЛЕТЕНЬ «СТАТЬИ»  N.36                    08.09.14

 

С 1 МАТЕМАТИКА

 

1.Блейчер, А. Оракул/ А.Блейчер // В мире науки.-2014.-No.7/8.-с.148-154 .- Библиогр.:6.
http://www.sciam.ru/journal/catalog/article/orakul.

 

С 131 ВЫСШАЯ АЛГЕБРА. ЛИНЕЙНАЯ АЛГЕБРА. ТЕОРИЯ МАТРИЦ

 

2.Juric, T. *k-Poincare-Hopf Algebra and Hopf Algebroid Structure of Phase Space from Twist/ T.Juric, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2472-2476 .- Bibliogr.:57.
http://dx.doi.org/10.1016/j.physleta.2013.07.021.

 

С 133.2 УРАВНЕНИЯ МАТЕМАТИЧЕСКОЙ ФИЗИКИ.

 

3.Huang, X.Q. The Varied Nonlinear Interface Waves in a Scale-Limited Two-Medium Oscillatory System/ X.Q.Huang, [et al.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.186-193 .- Bibliogr.:23.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060120.pdf.

 

С 15 ТЕОРИЯ ВЕРОЯТНОСТЕЙ И МАТЕМАТИЧЕСКАЯ СТАТИСТИКА

 

4.Balankin, A.S. Stresses and Strains in a Deformable Fractal Medium and in Its Fractal Continuum Model/ A.S.Balankin // Physics Letters A.-2013.-Vol.377, No.38.-p.2535-2541 .- Bibliogr.:71.
http://dx.doi.org/10.1016/j.physleta.2013.07.029.

5.Bespalov, A.V. Time-Series Rate of Convergence to Quasi-Periodic Oscillations/ A.V.Bespalov, E.V.Vilkova // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.354-362 .- Bibliogr.:15.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P354.pdf.

6.Blaszak, M. Integrable Quantum Stackel Systems/ M.Blaszak, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2564-2572 .- Bibliogr.:39.
http://dx.doi.org/10.1016/j.physleta.2013.08.005.

7.Drozdov, A. Comparison of Wavelet Transform and Fourier Transform Applied to Analysis of Non-Stationary Processes/ A.Drozdov, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.363-373 .- Bibliogr.:9.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P363.pdf.

8.Lim, J.H. Detrended Fluctuation Analysis and Kolmogorov-Sinai Entropy of Electroencephalogram Signals/ J.H.Lim, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2542-2545 .- Bibliogr.:35.
http://dx.doi.org/10.1016/j.physleta.2013.07.034.

9.Qing-Hua, L. Design of an All-Optical Switch and Arbitrary Proportion of Energy Output Beam Splitter/ L.Qing-Hua, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2561-2563 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.physleta.2013.07.058.

10.Zhu, X. Negative Probabilities and Information Gain in Weak Measurements/ X.Zhu, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2505-2509 .- Bibliogr.:35.
http://dx.doi.org/10.1016/j.physleta.2013.07.023.

 

С 17 ВЫЧИСЛИТЕЛЬНАЯ МАТЕМАТИКА.

 

11.Iwai, T. Qualitative Features of the Rearrangement of Molecular Energy Spectra from a "Wall-Crossing" Perspective/ T.Iwai, B.Zhilinskii // Physics Letters A.-2013.-Vol.377, No.38.-p.2481-2486 .- Bibliogr.:30.
http://dx.doi.org/10.1016/j.physleta.2013.07.043.

 

С 321 КЛАССИЧЕСКАЯ МЕХАНИКА

 

12.Chabchoub, A. Observation of Rogue Wave Triplets in Water Waves/ A.Chabchoub, N.Akhmediev // Physics Letters A.-2013.-Vol.377, No.38.-p.2590-2593 .- Bibliogr.:24.
http://dx.doi.org/10.1016/j.physleta.2013.07.027.

13.Ogawa, N. Diffusion in a Curved Tube/ N.Ogawa // Physics Letters A.-2013.-Vol.377, No.38.-p.2465-2471 .- Bibliogr.:16.
http://dx.doi.org/10.1016/j.physleta.2013.07.054.

14.Wan, X. Effects of Rocket Engines on Laser During Lunar Landing/ X.Wan, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2598-2603 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.physleta.2013.07.052.

15.Yao, A. Counter Operation in Nonlinear Micro-Electro-Mechanical Resonators/ A.Yao, T.Hikihara // Physics Letters A.-2013.-Vol.377, No.38.-p.2551-2555 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.physleta.2013.07.042.

16.Зубарев, Н.М. Формирование особенностей на поверхности раздела жидкостей при развитии неустойчивости Кельвина-Гельмгольца/ Н.М.Зубарев, Е.А.Кузнецов // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.194-204 .- Библиогр.:25.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060077.pdf.

17.Пименова, А.В. Кипение на границе двух несмешивающихся жидкостей ниже температуры объемного кипения каждой из компонент/ А.В.Пименова, Д.С.Голдобин // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.105-115 .- Библиогр.:17.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060053.pdf.

 

С 322 ТЕОРИЯ ОТНОСИТЕЛЬНОСТИ

 

18.Bahar, M.K. Relativistic Solutions for the Spin-1 Particles in the Two-Dimensional Smorodinsky-Winternitz Potential/ M.K.Bahar, F.Yasuk // Annals of Physics.-2014.-Vol.344.-p.105-117 .- Bibliogr.:32.
http://dx.doi.org/10.1016/j.aop.2014.02.010.

19.Bejot, P. Harmonic Generation and Nonlinear Propagation: When Secondary Radiations Have Primary Consequences/ P.Bejot, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.203902 .- Bibliogr.:28.
http://dx.doi.org/10.1103/PhysRevLett.112.203902.

20.Dodin, I.Y. Ponderomotive Forces on Waves in Modulated Media/ I.Y.Dodin, N.J.Fisch // Physical Review Letters.-2014.-Vol.112, No.20.-p.205002 .- Bibliogr.:33.
http://dx.doi.org/10.1103/PhysRevLett.112.205002.

21.Fazel, M. Black Hole Temperature: Minimal Coupling vs Conformal Coupling/ M.Fazel, [et al.] // Annals of Physics.-2014.-Vol.344.-p.232-252 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.aop.2014.02.020.

22.Jin, Y. Spontaneous Excitation of a Circularly Accelerated Atom Coupled to Electromagnetic Vacuum Fluctuations/ Y.Jin, [et al.] // Annals of Physics.-2014.-Vol.344.-p.97-104 .- Bibliogr.:25.
http://dx.doi.org/10.1016/j.aop.2014.02.011.

23.Kisslinger, L.S. Dark Mass Creation During EWPT Via Dark Energy Interaction/ L.S.Kisslinger, S.Casper // Modern Physics Letters A.-2014.-Vol.29, No.12.-p.1450055 .- Bibliogr.:9.
http://dx.doi.org/10.1142/S0217732314500552.

24.Puetzfeld, D. Unraveling Gravity Beyond Einstein with Extended Test Bodies/ D.Puetzfeld, Y.N.Obukhov // Physics Letters A.-2013.-Vol.377, No.38.-p.2447-49 .- Bibliogr.:30.
http://dx.doi.org/10.1016/j.physleta.2013.07.024.

25.Ruffuni, R. Gravitational and Electric Energies in the Collapse of a Spherical Thin-Shell Capacitor/ R.Ruffuni, S.-S.Xue // Physics Letters A.-2013.-Vol.377, No.38.-p.2450-2456 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.physleta.2013.07.026.

26.Schlippert, D. Quantum Test of the Universality of Free Fall/ D.Schlippert, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.203002 .- Bibliogr.:44.
http://dx.doi.org/10.1103/PhysRevLett.112.203002.

27.Sharif, M. Piligrim Dark Energy in f(T) Gravity/ M.Sharif, S.Rani // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.87-95 .- Bibliogr.:38.
http://link.springer.com/content/pdf/10.1134%2FS1063776114070152.pdf.

28.Solovyev, D. Bloch-Siegert Shift in Application to the Astrophysical Determination of the Fundamental Constants Variation/ D.Solovyev // Physics Letters A.-2013.-Vol.377, No.38.-p.2573-2576 .- Bibliogr.:31.
http://dx.doi.org/10.1016/j.physleta.2013.07.022.

29.Гриббин, Д. В начале был Большой взрыв/ Д.Гриббин // Наука в фокусе.-2014.-No.7/8.-с.72-77.

30.Московиц, К. Наша раздувшаяся Вселенная/ К.Московиц // В мире науки.-2014.-No.7/8.-с.37.

31.Рубан, В.П. Идеальная гидродинамика снаружи и внутри черной дыры: гамильтоново описание в координатах Перлеве-Гуллстранда/ В.П.Рубан // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.96-104 .- Библиогр.:35.
http://link.springer.com/content/pdf/10.1134%2FS1063776114070061.pdf.

 

С 323 КВАНТОВАЯ МЕХАНИКА

 

32.Alvarez, J.J. Unstable Quantum Oscillator with Point Interactions: Maverick Resonances, Antibound States and Other Surprises/ J.J.Alvarez, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2510-2519 .- Bibliogr.:33.
http://dx.doi.org/10.1016/j.physleta.2013.07.045.

33.Bergeron, H. Integral Quantizations with Two Basic Examples/ H.Bergeron, J.P.Gazeau // Annals of Physics.-2014.-Vol.344.-p.43-68 .- Bibliogr.:63.
http://dx.doi.org/10.1016/j.aop.2014.02.008.

34.Blaszak, M. Natural Star-Productions on Symplectic Manifolds and Related Quantum Mechanical Operators/ M.Blaszak, Z.Domanski // Annals of Physics.-2014.-Vol.344.-p.29-42 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.aop.2014.02.013.

35.Bowles, J. One-Way Einstein-Podolsky-Rosen Steering/ J.Bowles, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.200402 .- Bibliogr.:27.
http://dx.doi.org/10.1103/PhysRevLett.112.200402.

36.Chen, C. Generalized Transport Model for Phase Transition with Memory/ C.Chen, F.Ciucci // Physics Letters A.-2013.-Vol.377, No.38.-p.2668-2672 .- Bibliogr.:33.
http://dx.doi.org/10.1016/j.physleta.2013.08.002.

37.Chow, K.W. Localized and Periodic Wave Patterns for a Nonic Nonlinear Schrodinger Equation/ K.W.Chow, C.Rogers // Physics Letters A.-2013.-Vol.377, No.38.-p.2546-2550 .- Bibliogr.:31.
http://dx.doi.org/10.1016/j.physleta.2013.07.041.

38.Kudryavtsev, A.G. Exactly Solvable Two-Dimensional Stationary Schrodinger Operators Obtained by the Nonlocal Darboux Transformation/ A.G.Kudryavtsev // Physics Letters A.-2013.-Vol.377, No.38.-p.2477-2480 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.physleta.2013.07.036.

39.Losada, M. Generlized Contexts and Consistent Histories in Quantum Mechanics/ M.Losada, R.Laura // Annals of Physics.-2014.-Vol.344.-p.263-274 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.aop.2014.03.001.

40.Magana-Loaiza, O.S. Amplification of Angular Rotations Using Weak Measurements/ O.S.Magana-Loaiza, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.200401 .- Bibliogr.:51.
http://dx.doi.org/10.1103/PhysRevLett.112.200401.

41.Xu, X.-P. Analytical Solutions for Quantum Walks on 1D Chain with Different Shift Operators/ X.-P.Xu, [et al.] // Annals of Physics.-2014.-Vol.344.-p.194-212 .- Bibliogr.:30.
http://dx.doi.org/10.1016/j.aop.2014.02.018.

 

С 323.4 СИСТЕМАТИКА И МОДЕЛИ ЭЛЕМЕНТАРНЫХ ЧАСТИЦ. CИСТЕМАТИКА СУБЧАСТИЦ

 

42.Lebiedowicz, P. Exlusive Central Diffractive Production of Scalar and Pseudoscalar Mesons; Tensorial vs.Vectorial Pomeron/ P.Lebiedowicz, [et al.] // Annals of Physics.-2014.-Vol.344.-p.301-339 .- Bibliogr.:75.
http://dx.doi.org/10.1016/j.aop.2014.02.021.

 

С 323.5 ТЕОРИЯ ВЗАИМОДЕЙСТВИЯ ЧАСТИЦ ПРИ ВЫСОКИХ ЭНЕРГИЯХ

 

43.Blumlein, J. The O(*a*2&sub(s)) Heavy Quark Corrections to Charged Current Deep-Inelastic Scattering at Large Virtualities/ J.Blumlein, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.1-41 .- Bibliogr.:60.
http://dx.doi.org/10.1016/j.nuclphysb.2014.01.023.

44.Castorina, P. Causality Constraints on Hadron Production in High Energy Collisions/ P.Castorina, H.Satz // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1450019 .- Bibliogr.:15.
http://dx.doi.org/10.1142/S0218301314500190.

45.Catani, S. Universality of Transverse-Momentum Resummation and Hard Factors at the NNLO/ S.Catani, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.414-443 .- Bibliogr.:78.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.011.

46.Lebiedowicz, P. Search for Technipions in Exclusive Production of Diphotons with Large Invariant Masses at the LHC/ P.Lebiedowicz, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.288-308 .- Bibliogr.:55.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.008.

 

С 324 КВАНТОВАЯ ТЕОРИЯ ПОЛЯ

 

47.Brihaye, Y. Dynamics on the Cone: Closed Orbits and Superintegrability/ Y.Brihaye, [et al.] // Annals of Physics.-2014.-Vol.344.-p.253-262 .- Bibliogr.:30.
http://dx.doi.org/10.1016/j.aop.2014.02.022.

 

С 324.1 ВТОРИЧНО-КВАНТОВАННЫЕ ЛОКАЛЬНЫЕ ТЕОРИИ ВЗАИМОДЕЙСТВУЮЩИХ ПОЛЕЙ

 

48.Capri, M.A.L. Study of the Zero Modes of the Faddeev-Popov Operator in the Maximal Abelian Gauge/ M.A.L.Capri, [et al.] // Annals of Physics.-2014.-Vol.344.-p.275-289 .- Bibliogr.:16.
http://dx.doi.org/10.1016/j.aop.2014.02.016.

49.Ishikawa, K. Matter-Enhanced Transition Probabilities in Quantum Field Theory/ K.Ishikawa, Y.Tobita // Annals of Physics.-2014.-Vol.344.-p.118-178 .- Bibliogr.:55.
http://dx.doi.org/10.1016/j.aop.2014.02.007.

 

С 324.1а КВАНТОВАЯ ЭЛЕКТРОДИНАМИКА.ЭКСПЕРИМЕНТЫ ПО ПРОВЕРКЕ КЭД ПРИ ВЫСОКИХ ЭНЕРГИЯХ

 

50.Kim, S.P. Landau Levels of Scalar QED in Time-Dependent Magnetic Fields/ S.P.Kim // Annals of Physics.-2014.-Vol.344.-p.1-9 .- Bibliogr.:32.
http://dx.doi.org/10.1016/j.aop.2014.02.009.

51.Klaczynski, L. Avoidance of a Landau Pole by Flat Contributions in QED/ L.Klaczynski, D.Kremier // Annals of Physics.-2014.-Vol.344.-p.213-231 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.aop.2014.02.019.

 

С 324.1б СИЛЬНЫЕ ВЗАИМОДЕЙСТВИЯ.ЭЛЕКТРОМАГНИТНАЯ СТРУКТУРА ЧАСТИЦ. АЛГЕБРА ТОКОВ. КИРАЛЬНЫЕ ТЕОРИИ. ТЕОРИЯ РЕДЖЕ

 

52.Abreu, L.M. Thermodynamic Behavior of the Generalized Scalar Yukawa Model in a Magnetic Background/ L.M.Abreu, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.327-342 .- Bibliogr.:37.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.013.

53.Baru, V. Effective Field Theory Calculations of NN *> NN*p/ V.Baru, [et al.] // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1430004 .- Bibliogr.:209.
http://dx.doi.org/10.1142/S0218301314300045.

 

С 324.1в СЛАБЫЕ ВЗАИМОДЕЙСТВИЯ.ТЕОРИЯ ВАЙНБЕРГА-САЛАМА И ЕЕ МОДИФИКАЦИИ

 

54.Bhatti, A.A. Zero Texture Lepton Mass Matrices and Near Tribimaximal Mixing in the SO(10) Theory/ A.A.Bhatti, H.Fritzsch // Modern Physics Letters A.-2014.-Vol.29, No.12.-p.1450059 .- Bibliogr.:14.
http://dx.doi.org/10.1142/S021773231450059X.

55.Borah, D. Sub-Dominant Type-II Seesaw as an Origin of Non-Zero *y&sub(13) in SO(10) Model with TeV Scale Z' Gauge Boson/ D.Borah, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.444-466 .- Bibliogr.:29.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.017.

56.Fairbairn, M. Electroweak Vacuum Stability in Light of BICEP2/ M.Fairbairn, R.Hogan // Physical Review Letters.-2014.-Vol.112, No.20.-p.201801 .- Bibliogr.:36.
http://dx.doi.org/10.1103/PhysRevLett.112.201801.

 

С 324.1г КАЛИБРОВОЧНЫЕ ТЕОРИИ ПОЛЯ.СПОНТАННО-НАРУШЕННЫЕ СИММЕТРИИ.МОДЕЛИ ВЕЛИКОГО ОБЪЕДИНЕНИЯ

 

57.Shindler, A. Chiral Ward Identities, Automatic O(a) Improvement and the Gradient Flow/ A.Shindler // Nuclear Physics B.-2014.-Vol.881.-p.71-90 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.nuclphysb.2014.01.022.

 

С 324.1г1 КАЛИБРОВОЧНЫЕ ПОЛЯ НА РЕШЕТКЕ

 

58.Rico, E. Tensor Networks for Lattice Gauge Theories and Atomic Quantum Simulation/ E.Rico, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.201601 .- Bibliogr.:52.
http://dx.doi.org/10.1103/PhysRevLett.112.201601.

 

С 324.1д КВАНТОВАЯ ХРОМОДИНАМИКА

 

59.Fried, H.M. Non-Perturbative QCD Amplitudes in Quenched and Eikonal Approximations/ H.M.Fried, [et al.] // Annals of Physics.-2014.-Vol.344.-p.78-96 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.aop.2014.02.015.

 

С 324.1е СУПЕРСИММЕТРИЧНЫЕ ТЕОРИИ. СУПЕРГРАВИТАЦИЯ. СУПЕРСТРУНЫ

 

60.Ahl Laamara, R. On Higgs-Extended MSSM Models/ R.Ahl Laamara, [et al.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.60-64 .- Bibliogr.:18.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060168.pdf.

61.Berman, D.S. Supersymmetry for Gauged Double Field Theory and Generalised Scherk-Schwarz Reductions/ D.S.Berman, K.Lee // Nuclear Physics B.-2014.-Vol.881.-p.369-390 .- Bibliogr.:67.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.015.

62.Buchbinder, I.L. Two-Loop Low-Energy Effective Action in Abelian Supersymmetric Chern-Simons Matter Models/ I.L.Buchbinder, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.42-70 .- Bibliogr.:45.
http://dx.doi.org/10.1016/j.nuclphysb.2014.01.025.

63.Chicherin, D. Yang-Baxter Operators and Scattering Amplitudes in N=4 Super-Yang-Mills Theory/ D.Chicherin, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.467-501 .- Bibliogr.:45.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.016.

64.Kord, A.F. Comments on the Role of Field Redefinition on Renormalisation of N=1/2 Supersymmetric Pure Gauge Theory/ A.F.Kord, M.H.Moghaddam // Nuclear Physics B.-2014.-Vol.881.-p.539-560 .- Bibliogr.:18.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.004.

65.Ликкен, Д. Сусерсимметрия и кризис в физике/ Д.Ликкен, М.Спиропулу // В мире науки.-2014.-No.7/8.-с.22-29 .- Библиогр.:2.
http://www.sciam.ru/journal/catalog/article/supersimmetriya-i-krizis-v-fizike.

 

С 324.2 НЕЛОКАЛЬНЫЕ И НЕЛИНЕЙНЫЕ ТЕОРИИ ПОЛЯ.ТЕОРИИ С ВЫСШИМИ ПРОИЗВОДНЫМИ. ТЕОРИЯ С ИНДЕФИНИТНОЙ МЕТРИКОЙ

 

66.Anguelova, L. On the Stability of D7-D7^- Probes in Near-Conformal Backgrounds/ L.Anguelova, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.309-326 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.010.

67.Cheng, S. Off-Shell D-Brane/F-Theory Effective Superpotentials and Ooguri-Vafa Invariants of Several Compact Calabi-Yau Manifolds/ S.Cheng, [et al.] // Modern Physics Letters A.-2014.-Vol.29, No.12.-p.1450061 .- Bibliogr.:30.
http://dx.doi.org/10.1142/S0217732314500618.

68.Francia, D. On the Gauge Symmetries of Maxwell-Like Higher-Spin Lagrangians/ D.Francia, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.248-268 .- Bibliogr.:29.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.001.

69.Fre, P. Integrable Scalar Cosmologies II.Can They Fit into Gauged Extended Supergravity or be Encoded in N=1 Superpotentials?/ P.Fre, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.91-180 .- Bibliogr.:50.
http://dx.doi.org/10.1016/j.nuclphysb.2014.024.

70.Parkhomenko, S.E. Line Bundle Twisted Chiral de Rham Complex and Bound Staets of D-Branes on Toric Manifolds/ S.E.Parkhomenko // Nuclear Physics B.-2014.-Vol.881.-p.233-247 .- Bibliogr.:27.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.003.

71.Stieberger, S. Closed String Amplitudes as Single-Valued Open String Amplitudes/ S.Stieberger, T.R.Taylor // Nuclear Physics B.-2014.-Vol.881.-p.269-287 .- Bibliogr.:37.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.005.

72.Zoghi, M. Open String in the Presence of the pp-Wave, Linear Dilaton, and Kalb-Ramond Backgrounds/ M.Zoghi, D.Kamani // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.82-86 .- Bibliogr.:12.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060107.pdf.

 

С 324.3 АКСИОМАТИЧЕСКАЯ ТЕОРИЯ ПОЛЯ.АНАЛИТИЧЕСКИЕ СВОЙСТВА МАТРИЧНЫХ ЭЛЕМЕНТОВ И ДИСПЕРСИОННЫЕ СООТНОШЕНИЯ

 

73.Upadhyay, S. Generalised BRST Symmetry and Gaugeon Formalism for Perturbative Quantum Gravity: Novel Observation/ S.Upadhyay // Annals of Physics.-2014.-Vol.344.-p.290-300 .- Bibliogr.:46.
http://dx.doi.org/10.1016/j.aop.2014.03.002.

 

С 325 СТАТИСТИЧЕСКАЯ ФИЗИКА И ТЕРМОДИНАМИКА

 

74.Almjasheva, O.V. Metastable Clusters and Aggregative Nucleation Mechanism/ O.V.Almjasheva, V.V.Gusarov // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.405-416 .- Bibliogr.:103.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P405.pdf.

75.Duan, H.-Y. Magnetic Properties of Barium Ferrite Nanoparticles: Quantitative Test of the Stoner-Wohlfarth Theory for Uniaxial Single-Domain Magnetic Particles/ H.-Y.Duan, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2659-2662 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.physleta.2013.07.050.

76.Gerasimov, A.M. Conversion Efficiency of Second Harmonic Generation in One-Dimensional Photonic Crystal Based from Isotropic Material/ A.M.Gerasimov, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.374-377 .- Bibliogr.:7.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P374.pdf.

77.Karpunin, V.V. The Absorption of Electromagnetic Radiation in a Quantum Wire/ V.V.Karpunin, V.A.Margulis // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.378-383 .- Bibliogr.:14.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P378.pdf.

78.Kin Fai Mak. Tuning Many-Body Interactions in Graphene: The Effects of Doping on Excitons and Carrier Lifetimes/ Kin Fai Mak, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.207401 .- Bibliogr.:35.
http://dx.doi.org/10.1103/PhysRevLett.112.207401.

79.Knolle, J. Dynamics of a Two-Dimensional Quantum Spin Liquid: Signatures of Emergent Majorana Fermions and Fluxes/ J.Knolle, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.207203 .- Bibliogr.:26.
http://dx.doi.org/10.1103/PhysRevLett.112.207203.

80.Kong, Y.-H. Electric Control of Spin-Dependent Goos-Hanchen Shift in a Magnetically Modulated Semiconductor Nanostructure/ Y.-H.Kong, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2610-2613 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.physleta.2013.07.030.

81.Liang, H. Modulation of the Work Function of Fullerenes C&sub(60) and C&sub(70) by Alkali-Metal Adsorption: A Theoretical Study/ H.Liang, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2676-2680 .- Bibliogr.:24.
http://dx.doi.org/10.1016/j.physleta.2013.08.007.

82.Lukyanov, V.D. Relationship Plurality Approximation/ V.D.Lukyanov // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.384-390 .- Bibliogr.:5.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P384.pdf.

83.Mueller, M. Nonstandard Finite-Size Scaling at First-Order Phase Transitions/ M.Mueller, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.200601 .- Bibliogr.:25.
http://dx.doi.org/10.1103/PhysRevLett.112.200601.

84.Popkov, V. Superdiffusive Modes in Two-Species Driven Diffusive Systems/ V.Popkov, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.200602 .- Bibliogr.:29.
http://dx.doi.org/10.1103/PhysRevLett.112.200602.

85.Popov, A.I. Benchmark Solutions for Nanoflows/ A.I.Popov, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.391-399 .- Bibliogr.:14.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P391.pdf.

86.Radovic, I. Wake Effect in Interactions of Dipolar Molecules with Doped Graphene/ I.Radovic, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2614-2620 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.physleta.2013.07.038.

87.Rodygina, O.A. Crystallite Model for Flow in Nanotube Caused by Wall Soliton/ O.A.Rodygina, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.400-404 .- Bibliogr.:16.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P400.pdf.

88.Semenov, K.N. Poly-Thermal Solubility and Complex Thermal Analysis of Water-Soluble Tris-Malonate of Light Fullerene - C&sub(60) [= C(COOH)&sub(2)]&sub(3)/ K.N.Semenov, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.435-440 .- Bibliogr.:14.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P441.pdf.

89.Semenov, K.N. Volume Properties of Water Solution and Refraction at 25&sup(O)C Water-Soluble Tris-Malonate of Light Fullerene - C&sub(60) [= C(COOH)&sub(2)]&sub(3)/ K.N.Semenov, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.427-434 .- Bibliogr.:5.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P427.pdf.

90.Yang, J. Phonon Transport Through Point Contacts Between Graphitic Nanomaterials/ J.Yang, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.205901 .- Bibliogr.:34.
http://dx.doi.org/10.1103/PhysRevLett.112.205901.

91.Yuksel, Y. Monte Carlo Simulations of Dynamic Phase Transitions in Ultrathin Blume-Capel Films/ Y.Yuksel // Physics Letters A.-2013.-Vol.377, No.38.-p.2494-2504 .- Bibliogr.:61.
http://dx.doi.org/10.1016/j.physleta.2013.08.001.

 

С 325.1 ТОЧНО РЕШАЕМЫЕ И РЕШЕТОЧНЫЕ МОДЕЛИ.

 

92.Normand, B. Hubbard Model on the Pyrochlore Lattice: A 3D Quantum Spin Liquid/ B.Normand, Z.Nussinov // Physical Review Letters.-2014.-Vol.112, No.20.-p.207202 .- Bibliogr.:25.
http://dx.doi.org/10.1103/PhysRevLett.112.207202.

93.Rasulov, T.H. Essential and Discrete Spectrum of a Three-Particle Lattice Hamiltonian with Non-Local Potentials/ T.H.Rasulov, Z.D.Rasulova // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.327-342 .- Bibliogr.:18.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P327.pdf.

94.Squellari, R. Yang-Baxter *s Model: Quantum Aspects/ R.Squellari // Nuclear Physics B.-2014.-Vol.881.-p.502-513 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.009.

 

С 326 КВАНТОВАЯ ТЕОРИЯ СИСТЕМ ИЗ МНОГИХ ЧАСТИЦ.КВАНТОВАЯ СТАТИСТИКА

 

95.Altland, A. Quantum Criticality of Quasi-One-Dimensional Topological Anderson Insulators/ A.Altland, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.206602 .- Bibliogr.:27.
http://dx.doi.org/10.1103/PhysRevLett.112.206602.

96.Ambartsumyan, V.A. Channels of Electron-Electron Interactions in Highly Doped Heterojunction/ V.A.Ambartsumyan, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.343-353 .- Bibliogr.:20.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P343.pdf.

97.Hasan, M. Critical Coupling and Coherent Perfect Absorption for Ranges of Energies Due to a Complex Gain and Loss Symmetric System/ M.Hasan, [et al.] // Annals of Physics.-2014.-Vol.344.-p.17-28 .- Bibliogr.:52.
http://dx.doi.org/10.1016/j.aop.2014.02.012.

98.Heikkila, T.T. Enhancing Optomechanical Coupling via the Josephson Effect/ T.T.Heikkila, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.203603 .- Bibliogr.:42.
http://dx.doi.org/10.1103/PhysRevLett.112.203603.

99.Inarrea, J. Quenching of the Giant Off-Resonance Magnetoresistance Spike Mediated by an in-Plane Magnetic Field in Irradiated 2D-Electron Systems/ J.Inarrea // Physics Letters A.-2013.-Vol.377, No.38.-p.2642-2646 .- Bibliogr.:29.
http://dx.doi.org/10.1016/j.physleta.2013.07.044.

100.Kopec, T.K. Berezinskii-Kosterlitz-Thouless Transition in Two-Dimensional Arrays of Josephson Coupled Bose-Einstein Condensates/ T.K.Kopec, M.J.Bogdan // Physics Letters A.-2013.-Vol.377, No.38.-p.2581-2584 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.physleta.2013.08.013.

101.Las Heras, U. Digital Quantum Simulation of Spin Systems in Superconducting Circuits/ U.Las Heras, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.200501 .- Bibliogr.:32.
http://dx.doi.org/10.1103/PhysRevLett.112.200501.

102.Lopez-Ruiz, R. Study of a Quantum Scattering Process by Means of Entropic Measures/ R.Lopez-Ruiz, J.Sanudo // Physics Letters A.-2013.-Vol.377, No.38.-p.2556-2560 .- Bibliogr.:32.
http://dx.doi.org/10.1016/j.physleta.2013.07.057.

103.Moskalets, M. Floquet Scattering Matrix Theory of Heat Fluctuations in Dynamical Quantum Conductors/ M.Moskalets // Physical Review Letters.-2014.-Vol.112, No.20.-p.206801 .- Bibliogr.:42.
http://dx.doi.org/10.1103/PhysRevLett.112.206801.

104.Pakuliak, S. Form Factors in Quantum Integrable Models with GL(3)-Invariant R-Matrix/ S.Pakuliak, [et al.] // Nuclear Physics B.-2014.-Vol.881.-p.343-368 .- Bibliogr.:41.
http://dx.doi.org/10.1016/j.nuclphysb.2014.02.014.

105.Pawlak, A. Effect of Magnetic Field on Dynamic Response Function in Ising Systems/ A.Pawlak, R.Erdem // Physics Letters A.-2013.-Vol.377, No.38.-p.2487-2493 .- Bibliogr.:31.
http://dx.doi.org/10.1016/j.physleta.2013.07.033.

106.Sakai, H. Coexistence of Antiferromagnetism with Superconductivity in CePt&sub(2)In&sub(7): Microscopic Phase Diagram Determined by *1*1*5In NMR and NQR/ H.Sakai, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.206601 .- Bibliogr.:33.
http://dx.doi.org/10.1103/PhysRevLett.112.206401.

107.Wang, Z. Fidelity in Topological Superconductors with End Majorana Fermions/ Z.Wang, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2653-2658 .- Bibliogr.:32.
http://dx.doi.org/10.1016/j.physleta.2013.07.049.

 

С 33 а НАНОФИЗИКА. НАНОТЕХНОЛОГИЯ

 

108.Fu, B. Size and Temperature Dependence of the Tensile Mechanical Properties of Zinc Blende CdSe Nanowires/ B.Fu, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2681-2686 .- Bibliogr.:52.
http://dx.doi.org/10.1016/j.physleta.2013.08.008.

109.Guo, R. Breathers and Localized Solitons for the Hirota-Maxwell-Bloch System on Constant Backgrounds in Erbium Doped Fibers/ R.Guo, H.-Q.Hao // Annals of Physics.-2014.-Vol.344.-p.10-16 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.aop.2014.02.006.

110.Li, L. Moire Superstructures of Silicene on Hexagonal Boron Nitride: A First-Principles Study/ L.Li, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2628-2632 .- Bibliogr.:65.
http://dx.doi.org/10.1016/j.physleta.2013.07.037.

111.Li, Y. Interplay Between Water and TiO&sub(2) Anatase (101) Surface with Subsurface Oxygen Vacancy/ Y.Li, Y.Gao // Physical Review Letters.-2014.-Vol.112, No.20.-p.206101 .- Bibliogr.:36.
http://dx.doi.org/10.1103/PhysRevLett.112.206101.

112.Sheena, P.A. Effect of Calcination Temperature on the Structural and Optical Properties of Nickel Oxide Nanoparticles/ P.A.Sheena, [et al.] // Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.-p.441-449 .- Bibliogr.:23.
http://nanojournal.ifmo.ru/en/wp-content/uploads/2014/06/NPCM53P441.pdf.

113.Xie, W. Optical Absorptions of an Exciton in a Quantum Ring: Effect of the Repulsive Core/ W.Xie // Physics Letters A.-2013.-Vol.377, No.38.-p.2647-2652 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.physleta.2013.07.047.

114.Zhang, D. Laser-Polarization-Dependent and Magnetically Controlled Optical Bistability in Diamond Nitrogen-Vacancy Centers/ D.Zhang, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2621-2627 .- Bibliogr.:67.
http://dx.doi.org/10.1016/j.physleta.2013.08.004.

115.Кульчин, Ю.Н. Формирование нанопичков и наноотверстий в тонких металлических пленках под действием остросфокусированных наносекундных лазерных импульсов/ Ю.Н.Кульчин, [др.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.21-30 .- Библиогр.:35.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060156.pdf.

116.Саркисян, Д. Контрастный атомный темный резонанс, формируемый в лестничной системе атомов рубидия в субмикронных структурах/ Д.Саркисян, [др.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.13-20 .- Библиогр.:25.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060181.pdf.

117.Тарасов, М.А. Нетепловой оптический отклик туннельных структур сверхпроводник-изолятор-нормальный металл-изолятор-сверпроводник/ М.А.Тарасов, [др.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.123-132 .- Библиогр.:16.
http://link.springer.com/content/pdf/10.1134%2FS106377611406020X.pdf.

 

С 332 ЭЛЕКТРОМАГНИТНЫЕ ВЗАИМОДЕЙСТВИЯ

 

118.An, N.B. Protecting Entanglement of Atoms Stored in a Common Nonperfect Cavity Without Measurements/ N.B.An // Physics Letters A.-2013.-Vol.377, No.38.-p.2520-1523 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.physleta.2013.07.032.

119.Jiang, M. Deterministic Joint Remote Preparation of Arbitrary Multi-Qudit States/ M.Jiang, F.Jiang // Physics Letters A.-2013.-Vol.377, No.38.-p.2524-2530 .- Bibliogr.:24.
http://dx.doi.org/10.1016/j.physleta.2013.07.056.

120.Kudasov, D.Yu. High-Field Magnetic Phase Diagram of CsCoCl&sub(3) Revised/ D.Yu.Kudasov, Yu.B.Kudasov // Physics Letters A.-2013.-Vol.377, No.38.-p.2638-2641 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.physleta.2013.07.040.

121.Li, C. Engineering of Band Gap and Cavity Mode in Phononic Crystal Strip Waveguides/ C.Li, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2633-2637 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.physleta.2013.07.039.

122.Olsen, T. Accurate Ground-State Energies of Solids and Molecules from Time-Dependent Density-Functional Theory/ T.Olsen, K.S.Thygesen // Physical Review Letters.-2014.-Vol.112, No.20.-p.203001 .- Bibliogr.:36.
http://dx.doi.org/10.1103/PhysRevLett.112.203001.

123.Sunada, S. Optical Phase Synchronization by Injection of Common Broadband Low-Coherent Light/ S.Sunada, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.204101 .- Bibliogr.:22.
http://dx.doi.org/10.1103/PhysRevLett.112.204101.

124.Takabayashi, Y. New Method for Measuring Beam Profiles Using a Parametric X-Ray Pinhole Camera/ Y.Takabayashi, K.Sumitani // Physics Letters A.-2013.-Vol.377, No.38.-p.2577-2580 .- Bibliogr.:32.
http://dx.doi.org/10.1016/j.physleta.2013.07.055.

125.Teichert, J. Free-Electron Laser Operation with a Superconducting Radio-Frequency Photoinjector at ELBE/ J.Teichert, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.114-120 .- Bibliogr.:21.
http://dx.doi.org/10.1016/j.nima.2014.01.006.

126.Wiersig, J. Enhancing the Sensitivity of Frequency and Energy Splitting Detection by Using Exceptional Points: Application to Microcavity Sensors for Single-Particle Detection/ J.Wiersig // Physical Review Letters.-2014.-Vol.112, No.20.-p.203901 .- Bibliogr.:51.
http://dx.doi.org/10.1103/PhysRevLett.112.203901.

127.Yang, H. Dynamical Casimir-Polder Force on a Partially Dressed Atom in a Cavity Comprising a Dielectric/ H.Yang, [et al.] // Annals of Physics.-2014.-Vol.344.-p.69-77 .- Bibliogr.:18.
http://dx.doi.org/10.1016/j.aop.2014.02.001.

128.Yang, L.X. Ultrafast Modulation of the Chemical Potential in BaFe&sub(2)As&sub(2) by Coherent Phonons/ L.X.Yang, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.207001 .- Bibliogr.:48.
http://dx.doi.org/10.1103/PhysRevLett.112.207001.

129.Пархоменко, А.И. Усилитель лазерного излучения на парах щелочных металлов/ А.И.Пархоменко, А.М.Шалагин // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.31-44 .- Библиогр.:18.
http://link.springer.com/content/pdf/10.1134%2FS106377611407005X.pdf.

130.Сметанин, С.Н. Нестационарное вынужденное комбинационное рассеяние в кристаллах при движении населенностей колебательных состояний/ С.Н.Сметанин // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.45-50 .- Библиогр.:25.
http://link.springer.com/content/pdf/10.1134%2FS1063776114070085.pdf.

 

С 341 АТОМНЫЕ ЯДРА

 

131.Abrosimov, V.I. Pairing Collective Modes in Superfluid Nuclei: a Semiclassical Approach/ V.I.Abrosimov, [et al.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-p.846-849 .- Bibliogr.:11.
http://link.springer.com/content/pdf/10.3103%2FS106287381407003X.pdf.

132.Pattnaik, S. A Differential Equation for the Transition Probability B(E2)*! and the Resulting Recursion Relations Connecting Even-Even Nuclei/ S.Pattnaik, R.C.Nayak // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1450022 .- Bibliogr.:20.
http://dx.doi.org/10.1142/S0218301314500220.

133.Xing, Y.-Z. Discrepancy of in-Medium Nucleon-Nucleon Cross-Section in Different T-Matrix Representations/ Y.-Z.Xing, X.-W.Zhao // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1450023 .- Bibliogr.:33.
http://dx.doi.org/10.1142/S0218301314500232.

134.Гриднев, К.А. Определение статвеса волновых функций мультикластеров в легких ядрах в рамках параметризованного фазового анализа/ К.А.Гриднев, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.857-859 .- Библиогр.:7.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070132.pdf.

135.Тарасов, В.С. Исследование свойств ядер с экстремальным избытком нейтронов в окрестности нейтронных магических чисел/ В.С.Тарасов, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.782-789 .- Библиогр.:34.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070235.pdf.

 

С 341 а2 ГИГАНТСКИЕ РЕЗОНАНСЫ.

 

136.Садовникова, В.А. Оценка эмиссионной ширины гигантских дипольных резонансов в модели Ферми-жидкости/ В.А.Садовникова // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.853-856 .- Библиогр.:17.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070211.pdf.

 

С 341 е ЯДЕРНАЯ АСТРОФИЗИКА./см.также С 63/

 

137.Liu, S. Charge State Distribution of *1*6O from the *4He(*1*2C, *1*6O)*g Raction of Astrophysical Interest Studied Both Experimentally and Theoretically/ S.Liu, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.14-19 .- Bibliogr.:35.
http://dx.doi.org/10.1016/j.nimb.2014.02.115.

 

С 341.1 РАДИОАКТИВНОСТЬ

 

138.Вишневский, И.Н. Распад *1*2*0Sb/ И.Н.Вишневский, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.790-794 .- Библиогр.:9.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070247.pdf.

139.Лашко, А.П. Исследование низкоэнергетической области гамма-спектра &sup(177m)Lu/ А.П.Лашко, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.795-801 .- Библиогр.:24.
http://link.springer.com/content/pdf/10.3103%2FS106287381407017X.pdf.

 

С 341.2 СВОЙСТВА АТОМНЫХ ЯДЕР

 

140.Lieder, E.O. Resolution of Chiral Conundrum in *1*0*6Ag: Doppler-Shift Lifetime Investigation/ E.O.Lieder, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.202502 .- Bibliogr.:46.
http://dx.doi.org/10.1103/PhysRevLett.112.202502.

141.Rather, N. Exploring the Origin of Nearly Degenerate Doublet Bands in *1*0*6Ag/ N.Rather, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.202503 .- Bibliogr.:27.
http://dx.doi.org/10.1103/PhysRevLett.112.202503.

142.Sharma, D. Band Structure of Odd-Mass Lanthanum Nuclei/ D.Sharma, [et al.] // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1450020 .- Bibliogr.:45.
http://dx.doi.org/10.1142/S0218301314500207.

143.Скерри, Э. Таблица Менделеева: век недолог?/ Э.Скерри // В мире науки.-2014.-No.7/8.-с.76-81 .- Библиогр.:5.

144.Чечев, В.П. Экзотический тип ядерного изомерного перехода/ В.П.Чечев // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.850-852 .- Библиогр.:3.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070077.pdf.

 

С 341.3 ДЕЛЕНИЕ ЯДЕР

 

145.Preston, M.F. Tests of the Monte Carlo Simulation of the Photon-Tagger Focal-Plane Electronics at the MAX IV Laboratory/ M.F.Preston, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.17-20 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2014.01.040.

 

С 342 ПРОХОЖДЕНИЕ ЧАСТИЦ И ГАММА-КВАНТОВ ЧЕРЕЗ ВЕЩЕСТВО

 

146.Akkerman, A. Delta-Electron Spectra, Inelastic Cross Sections, and Stopping Powers of Ions in Silicon: Comparison between Different Models/ A.Akkerman, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.-p.1-7 .- Bibliogr.:61.
http://dx.doi.org/10.1016/j.nimb.2013.12.002.

147.Pasquevich, G.A. Mossbauer Magnetic Scan Experiments/ G.A.Pasquevich, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.48-58 .- Bibliogr.:40.
http://dx.doi.org/10.1016/j.nimb.2014.02.118.

 

С 343 ЯДЕРНЫЕ РЕАКЦИИ

 

148.Ali, B.M. Experimental Investigation and Theoretical Calculation of *3He-Particle Induced Nuclear Reactions on Cadmium up to 27 MeV/ B.M.Ali, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.-p.30-40 .- Bibliogr.:33.
http://dx.doi.org/10.1016/j.nimb.2013.12.022.

149.Belyshev, S.S. Studying Photonuclear Reactions Using the Activation Technique/ S.S.Belyshev, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.133-137 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.nima.2014.01.057.

150.Csedreki, L. Measurement of Gamma-Ray Production Cross Sections for Nuclear Reactions *1*4N(d, p*g)*1*5N and *2*8Si(d, p*g)*2*9Si/ L.Csedreki, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.20-26 .- Bibliogr.:38.
http://dx.doi.org/10.1016/j.nimb.2014.02.120.

151.Csedreki, L. Measurements and Assessment of *1*2C(d, p*g)*1*3C Reaction Cross Sections in the Deuteron Energy Range 740-2000 keV for Analytical Applications/ L.Csedreki, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.59-64 .- Bibliogr.:27.
http://dx.doi.org/10.1016/j.nimb.2014.02.123.

152.De Napoli, M. Study of New Resonances at High Excitation Energy by the *1*2*0Sn(p,t)*1*1*8Sn Reaction at 35 MeV/ M.De Napoli, [et al.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-p.802-804 .- Bibliogr.:14.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070193.pdf.

153.Paneta, V. Benchmarking Experiments for the Proton Backscattering on *2*3Na, *3*1P and &sup(nat)S up to 3.5 MeV/ V.Paneta, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.1-7 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.nimb.2014.02.010.

154.Дуйсебаев, А. Инклюзивные спектры протонов и *a-частиц из реакций,инициируемых протонами с энергией 30.0 МэВ на ядре *2*0*9Bi/ А.Дуйсебаев, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.815-819 .- Библиогр.:16.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070090.pdf.

155.Карпешин, Ф.Ф. Обратная конверсия в ионах *1*6*1Dy как продолжение диэлектронной рекомбинации/ Ф.Ф.Карпешин, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.891-898 .- Библиогр.:24.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070156.pdf.

156.Качан, А.С. Функции возбуждения реакций *4*0Ar(p,p'*g)*4*0Ar и *4*0Ar(p,*g)*4*1K/ А.С.Качан, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.805-814 .- Библиогр.:12.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070144.pdf.

157.Мочалов, М.А. Исследование квазиизэнтропической сжимаемости дейтерия и гелия при давлениях 1500-5000 ГПа/ М.А.Мочалов, [др.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.169-185 .- Библиогр.:42.
http://link.springer.com/content/pdf/10.1134%2FS106377611406017X.pdf.

158.Плавко, А.В. Сравнение спиновых наблюдаемых в реакции *1*2C(p^-,p^-)*1*2C при 100-500 МэВ с различными импульсными приближениями в методе искаженных волн/ А.В.Плавко, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.881-890 .- Библиогр.:32.
http://link.springer.com/content/pdf/10.3103%2FS106287381407020X.pdf.

 

С 343 а ТЕОРИЯ ЯДЕРНЫХ РЕАКЦИЙ. РАЗЛИЧНЫЕ МОДЕЛИ: СТАТИСТИЧЕСКАЯ, ОПТИЧЕСКАЯ, РЕЗОНАНСНАЯ

 

159.Bellini, F. Extended Calibration Range for Prompt Photon Emission in Ion Beam Irradiation/ F.Bellini, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.114-118 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2014.01.047.

160.Kopeliovich, B.Z. Energy Conservation in High-p&sub(T) Nuclear Reactions/ B.Z.Kopeliovich, [et al.] // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1430006 .- Bibliogr.:39.
http://dx.doi.org/10.1142/S0218301314300069.

161.Sahoo, R. Transverse Energy and Charged Particle Production in Heavy-Ion Collisions: From RHIC to LHC/ R.Sahoo, A.N.Mishra // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1450024 .- Bibliogr.:64.
http://dx.doi.org/10.1142/S0218301314500244.

162.Sau, G. On Some Properties of Deuteron and Antideuteron Production in High Energy Lead-Lead Collisions at 158A GeV/ G.Sau, S.Bhattacharyya // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1450021 .- Bibliogr.:39.
http://dx.doi.org/10.1142/S0218301314500219.

163.Tolstikhina, I.Yu. Influence of Relativistic Effects on Electron-Loss Cross Sections of Heavy and Superheavy Ions Colliding with Neutral Atoms/ I.Yu.Tolstikhina, [et al.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.5-12 .- Bibliogr.:30.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060211.pdf.

164.Афанасьева , Н.В. Выходы реакций в нуклонных каналах на ядрах *7Li и *9Be/ Н.В.Афанасьева , [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.860-865 .- Библиогр.:16.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070041.pdf.

165.Фадеев, С.Н. Кластерный обмен и упругое рассеяние тяжелых ионов/ С.Н.Фадеев, К.А.Гриднев // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.877-880 .- Библиогр.:9.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070119.pdf.

 

С 343 е ЯДЕРНЫЕ РЕАКЦИИ С ТЯЖЕЛЫМИ ИОНАМИ

 

166.Bondi, M. Selective of the *1*2C(*1*8O,*1*6O)*1*4C Reaction/ M.Bondi, [et al.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-p.820-821 .- Bibliogr.:12.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070053.pdf.

167.Carbone, D. Transfer to the Continuum of *1*4C via (*1*8O,*1*6O) Reaction/ D.Carbone, [et al.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-p.822-825 .- Bibliogr.:16.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070065.pdf.

168.Khan, K.H. Light Nuclei Formation in *1*2CC Collisions at 4.2A GeV/c/ K.H.Khan, M.K.Suleymanov, M.Ajaz, [a.o.] // Modern Physics Letters A.-2014.-Vol.29, No.12.-p.1450063 .- Bibliogr.:21.
http://dx.doi.org/10.1142/S0217732314500631.

169.Steinbach, T.K. Measuring the Fusion Cross-Section of Light Nuclei with Low-Intensity Beams/ T.K.Steinbach, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.5-13 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.nima.2013.12.045.

170.Денисов, В.Ю. Изотопические и нейтронно-избыточные эффекты в ядро-ядерном взаимодействии и сечении слияния/ В.Ю.Денисов, В.А.Нестеров // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.872-876 .- Библиогр.:24.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070089.pdf.

171.Дьяченко, А.Т. Расчет столкновений тяжелых ионов в рамках гидродинамического подхода с неравновесным уравнением состояния/ А.Т.Дьяченко, К.А.Гриднев // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.866-871 .- Библиогр.:12.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070107.pdf.

 

С 344.1 МЕТОДЫ И АППАРАТУРА ДЛЯ РЕГИСТРАЦИИ ЭЛЕМЕНТАРНЫХ ЧАСТИЦ

 

172.Adib, M. Neutron Monochromators of BeO, MgO and ZnO Single Crystals/ M.Adib, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.87-93 .- Bibliogr.:16.
http://dx.doi.org/10.1016/j.nima.2014.02.022.

173.Alexander, T. Light Yield in DarkSide-10: A Prototype Two-Phase Argon TPC for Dark Matter Searches/ T.Alexander, D.Korablev, O.Smirnov, A.Sotnikov, [a.o.] // Astroparticle Physics.-2013.-Vol.49.-p.44-51 .- Bibliogr.:29.
http://dx.doi.org/10.1016/j.astropartphys.2013.08.004.

174.Alexopoulos, T. Identification of Circles from Datapoints Using the Legendre Transform/ T.Alexopoulos, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.16-23 .- Bibliogr.:18.
http://dx.doi.org/10.1016/j.nima.2014.01.046.

175.Aliaga, L. Design, Calibration, and Performance of the MINERvA Detector/ L.Aliaga, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.130-159 .- Bibliogr.:30.
http://dx.doi.org/10.1016/j.nima.2013.12.053.

176.Banjanac, R. On the Omnipresent Background Gamma Radiation of the Continuous Spectrum/ R.Banjanac, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.7-11 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2014.01.065.

177.Bertoni, R. A New Technique for Direct Investigation of Dark Matter/ R.Bertoni, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.61-68 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.nima.2014.01.026.

178.Bindi, V. Calibration and Performance of the AMS-02 Time of Flight Detector in Space/ V.Bindi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.22-29 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2014.01.002.

179.Burnett, J.I. Cosmic Veto Gamma-Spectrometry for Comprehensive Nuclear-Test-Ban Treaty Samples/ J.I.Burnett, A.V.Davies // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.37-40 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.nima.2014.02.027.

180.Buttner, B. Alignment Methods for the OPERA Drift Tube Detector/ B.Buttner, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.56-61 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2014.02.011.

181.Cardarelli, R. Development of Multi-Layer Crystal Detector and Related Front End Electronics/ R.Cardarelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.82-87 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2014.01.027.

182.Chen, H. A Photon-Counting Silicon-Strip Detector for Digital Mammography with an Ultrafast 0.18-*mm CMOS ASIC/ H.Chen, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.1-6 .- Bbiliogr.:19.
http://dx.doi.org/10.1016/j.nima.2014.02.033.

183.Clarkson, A. The Design and Performance of a Scintillating-Fibre Tracker for the Cosmic-Ray Muon Tomography of Legacy Nuclear Waste Containers/ A.Clarkson, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.138-149 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2014.01.062.

184.Danevich, F.A. Optimization of Light Collection from Crystal Scintillators for Cryogenic Experiments/ F.A.Danevich, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.41-47 .- Bibliogr.:45.
http://dx.doi.org/10.1016/j.nima.2014.01.042.

185.De Los Rios, J.A.M. The Infrared Camera Prototype Characterization for the JEM-EUSO Space Mission/ J.A.M.De Los Rios, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.74-83 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.nima.2014.02.005.

186.Dissertori, G. Results on Damage Induced by High-Energy Protons in LYSO Calorimeter Crystals/ G.Dissertori, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.1-6 .- Bibliogr.:33.
http://dx.doi.org/10.1016/j.nima.2014.02.003.

187.Dokania, N. Characterization and Modeling of a Low Background HPGe Detector/ N.Dokania, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.119-127 .- Bibliogr.:38.
http://dx.doi.org/10.1016/j.nima.2014.01.064.

188.Duenas, J.A. Interstrip Effects Influence on the Particle Identification of Highly Segmented Silicon Strip Detector in a Nuclear Reaction Scenario/ J.A.Duenas, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.44-50 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2014.01.009.

189.Felizardo, M. Fabrication and Response of High Concentration SIMPLE Superheated Droplet Detectors with Different Liquids/ M.Felizardo, [et al.] // Astroparticle Physics.-2013.-Vol.49.-p.28-43 .- Bibliogr.:64.
http://dx.doi.org/10.1016/j.astropartphys.2013.08.006.

190.Halyo, V. Massively Parallel Computing and the Search for Jets and Black Holes at the LHC/ V.Halyo, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.54-60 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2014.01.038.

191.Hayashi, H. Performance of a Total Absorption Clover Detector for Q&sub(*b) Measurements of Neutron-Rich Nuclei Far from the *b-Stability Line/ H.Hayashi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.41-51 .- Bibliogr.:26.
http://dx.doi.org/10.1016/j.nima.2014.02.012.

192.He, C. An Implantation and *b Detection System Applied in *b-Decay Studies/ C.He, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.52-55 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2014.02.023.

193.Hitomi, K. Characterization of Pixelated TlBr Detectors with Tl Electrodes/ K.Hitomi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.7-12 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2014.02.020.

194.Jhingan, A. Detector System for the Study of Low Energy Heavy Ion Reactions Using Kinematic Coincidence Technique/ A.Jhingan, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.106-113 .- Bibliogr.:21.
http://dx.doi.org/10.1016/j.nima.2013.12.039.

195.Kurosawa, S. Performance of Ce-Doped (La, Gd)&sub(2)Si&sub(2)O&sub(7) Scintillator with an Avalanche Photodiode/ S.Kurosawa, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.30-34 .- Bibliogr.:29.
http://dx.doi.org/10.1016/j.nima.2014.01.018.

196.Laurent, B. A New Neutron Counter for Fission Research/ B.Laurent, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.99-105 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.nima.2014.01.063.

197.Lu, Y. Development of a SiPM-Based PET Imaging System for Small Animals/ Y.Lu, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.30-38 .- Bibliogr.:25.
http://dx.doi.org/10.1016/j.nima.2014.01.010.

198.Masi, A. A High Precision Radiation-Tolerant LVDT Conditioning Module/ A.Masi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.73-81 .- Bibliogr.:39.
http://dx.doi.org/10.1016/j.nima.2014.01.054.

199.Miloshevsky, G. Energy-Angle Correlation of Neutrons and Gamma-Rays Emitted from an HEU Source/ G.Miloshevsky, A.Hassanein // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.47-56 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2014.02.042.

200.Modzel, G. Absolute Efficiency Measurements with the *1*0B Based Jalousie Detector/ G.Modzel, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.90-95 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2014.01.007.

201.Morishita, Y. Development of a Si-PM Based Alpha Camera for Plutonium Detection in Nuclear Fuel Facilities/ Y.Morishita, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.81-86 .- Bibliogr.:16.
http://dx.doi.org/10.1016/j.nima.2013.12.052.

202.Naeem, S.F. Response of Liquid Scintillator Assemblies as a Function of Angular Orientation/ S.F.Naeem, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.35-41 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2014.02.050.

203.Naumann, C.L. Multi-Component Study of Extended Sources with a Likelihood Method/ C.L.Naumann, A.Jacholkowska // Astroparticle Physics.-2013.-Vol.49.-p.6-22 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.astropartphys.2013.07.005.

204.Schulz, J. An Improved Prism Energy Analyzer for Neutrons/ J.Schulz, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.69-72 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2014.01.049.

205.Shevchenko, D. Luminescence in ZnSe Scintillation Crystals co-Doped with Oxygen and Aluminum/ D.Shevchenko, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.14-18 .- Bibliogr.:35.
http://dx.doi.org/10.1016/j.nima.2014.02.048.

206.Shimizu, H. Development of a 4-Mirror Optical Cavity for an Inverse Compton Scattering Experiment in the STF/ H.Shimizu, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.63-72 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nima.2014.01.055.

207.Sosa, M. Fitting of Alpha-Efficiency Versus Quenching Parameter by Exponential Functions in Liquid Scintillation Counting/ M.Sosa, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.12-15 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.nima.2014.01.045.

208.Stancari, M. CDF Run II Silicon Vertex Detector Annealing Study/ M.Stancari, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.68-78 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2014.01.017.

209.Swiderski, L. Measuring the Scintillation Decay Time for Different Energy Depositions in NaI:Tl, LSO:Ce and CeBr&sub(3) Scintillators/ L.Swiderski, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.68-73 .- Bibliogr.:28.
http://dx.doi.org/10.1016/j.nima.2014.02.045.

210.Tarrio, D. Measurement of the Angular Distribution of Fission Fragments Using a PPAC Assembly at CERN n_TOF/ D.Tarrio, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.79-85 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.nima.2013.12.056.

211.Theisen, Ch. Musett: A Segmented Si Array for Recoil-Decay-Tagging Studies at VAMOS/ Ch.Theisen, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.69-80 .- Bibliogr.:52.
http://dx.doi.org/10.1016/j.nima.2014.02.016.

212.Wall, B.L. Dead Layer on Silicon p-i-n Diode Charged-Particle Detectors/ B.L.Wall, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.73-79 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.nima.2013.12.048.

213.Yamamoto, S. Three-Layer GSO Depth-of-Interaction Detector for High-Energy Gamma Camera/ S.Yamamoto, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.124-129 .- Bibliogr.:24.
http://dx.doi.org/10.1016/j.nima.2014.01.011.

214.Zagatto, V.A.B. *g-Particle Coincidence Technique for the Study of Nuclear Reactions/ V.A.B.Zagatto, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.19-26 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2014.02.014.

215.Zerovnik, G. Challenges and Solutions for Random Sampling of Parameters with Extremely Large Uncertainties and Analysis of the *2*3*2Th Resonance Covariances/ G.Zerovnik, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.39-43 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.nima.2014.01.012.

 

С 344.3 ЯДЕРНАЯ ЭЛЕКТРОНИКА

 

216.Fritts, M. Pulse-Shape Discrimination of Surface Events in CdZnTe Detectors for the COBRA Experiment/ M.Fritts, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.27-34 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2014.02.038.

217.Gao, W. Characteristics of a Multichannel Low-Noise Front-End ASIC for CZT-Based Small Animal PET Imaging/ W.Gao, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.57-62 .- Bibliogr.:23.
http://dx.doi.org/10.1016/j.nima.2014.01.059.

218.Gomez-Galan, J.A. Low Power Analog Front-End Electronics in Deep Submicrometer CMOS Technology Based on Gain Enhancement Techniques/ J.A.Gomez-Galan, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.90-95 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.nima.2014.02.044.

219.Marques, J.G. A Simple Digital Delay for Nuclear Physics Experiments/ J.G.Marques, C.Cruz // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.50-56 .- Bibliogr.:36.
http://dx.doi.org/10.1016/j.nima.2014.01.060.

220.Munzer, R. Si*Lvio: A Trigger for *L-Hyperons/ R.Munzer, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.38-49 .- Bibliogr.:26.
http://dx.doi.org/10.1016/j.nima.2014.01.050.

 

С 344.4а МЕТОДЫ ПРИГОТОВЛЕНИЯ МИШЕНЕЙ.

 

221.Pen, A. Design and Construction of a Water Target System for Harvesting Radioisotopes at the National Superconducting Cyclotron Laboratory/ A.Pen, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.62-68 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2014.02.010.

 

С 344.4б МЕТОДЫ ПРИГОТОВЛЕНИЯ ТОНКИХ ПЛЕНОК.

 

222.Datta, J. Study of Depth Profile of Hydrogen in Hydrogenated Diamond Like Carbon Thin Film Using Ion Beam Analysis Techniques/ J.Datta, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.27-32 .- Bibliogr.:36.
http://dx.doi.org/10.1016/j.nimb.2014.02.127.

223.Depla, D. On the Effective Sputter Yield During Magnetron Sputter Deposition/ D.Depla // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.65-69 .- Bibliogr.:23.
http://dx.doi.org/10.1016/j.nimb.2014.03.001.

224.Hwang, M.-L. Poly(Vinylbenzyl Sulfonic Acid)-Grafted Poly(Ether Ether Ketone) Membranes/ M.-L.Hwang, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.-p.59-65 .- Bibliogr.:37.
http://dx.doi.org/10.1016/j.nimb.2013.12.024.

225.Зеваков, С.А. Когерентное фоторождение нейтрального пиона на тензорно-поляризованном дейтроне на накопителе ВЭПП-3/ С.А.Зеваков, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.826-831 .- Библиогр.:14.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070260.pdf.

 

С 345 УСКОРИТЕЛИ ЗАРЯЖЕННЫХ ЧАСТИЦ

 

226.Crittenden, J.A. Shielded Button Electrodes for Time-Resolved Measurements of Electron Cloud Buildup/ J.A.Crittenden, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.42-46 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nima.2014.02.047.

227.Gontad, F. State-of-the-Art Pb Photocathodes Deposited by Pulsed Laser Deposition/ F.Gontad, A.Perrone // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.1-6 .- Bibliogr.:34.
http://dx.doi.org/10.1016/j.nima.2014.02.004.

228.Haciomeroglu, S. Results of Precision Particle Simulations in an All-Electric Ring Lattice Using Fourth-Order Runge-Kutta Integration/ S.Haciomeroglu, Y.K.Semertzidis // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.96-102 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2014.01.023.

229.Ilyenko, K. A Novel Representation for the Static Space-Charge Fields in Waveguide Excitation Theory/ K.Ilyenko, A.Opanasenko // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.88-90 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2014.01.048.

230.Koseki, K. Development of a Magnet Power Supply with Sub-ppm Ripple Performance for J-PARC with a Novel Common-Mode Rejection Method with an NPC Inverter/ K.Koseki, Y.Kurimoto // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.24-29 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2014.02.025.

231.Li, Y. Space Charge Impedances of a Rectangular Beam with Longitudinal Density Modulations Inside a Rectangular Chamber/ Y.Li, L.Wang // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.30-36 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2014.02.024.

232.Longuevergne, D. An Innovative Tuning System for Superconducting Accelerating Cavities/ D.Longuevergne, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.7-13 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2014.02.046.

233.Nomura, M. Ribbon Thickness Dependence of the Magnetic Alloy Core Characteristics in the Accelerating Frequency Region of the J-PARC Synchrotrons/ M.Nomura, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.84-89 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.nima.2014.02.041.

234.Plostinar, C. Orbit Correction in an Orbit Separated Cyclotron/ C.Plostinar, G.H.Rees // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.48-53 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2014.01.022.

235.Sugal, I. Performance Characteristics of HBC Stripper Foils Irradiated by 650 keV H*- and High Intensity DC Ion Beams/ I.Sugal, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.70-77 .- Bibliogr.:32.
http://dx.doi.org/10.1016/j.nimb.2014.03.002.

236.Демина, Н. Внимание, мотор!/ Н.Демина // Наука в фокусе.-2014.-No.7/8.-с.44-48 .-
http://www.vokrugsveta.ru/nauka/article/207766/.

 

С 345 а ОБЩИЕ СВЕДЕНИЯ О ПРОЕКТИРУЕМЫХ И ДЕЙСТВУЮЩИХ УСКОРИТЕЛЯХ

 

237.Gu, X. The Electron Lens Test Bench for the Relativistic Heavy Ion Collider at Brookhaven National Laboratory/ X.Gu, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.56-67 .- Bibliogr.:48.
http://dx.doi.org/10.1016/j.nima.2013.11.002.

238.Pestrikov, D.V. Landau Damping and the Head-Tail Instability of the Coupled Synchro-Betatron Coherent Oscillations/ D.V.Pestrikov // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.51-55 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2014.01.019.

 

С 345 о ЭЛЕКТРОННАЯ И ИОННАЯ ОПТИКА.ФОРМИРОВАНИЕ И АНАЛИЗ ПУЧКОВ ЧАСТИЦ

 

239.Abakumova, E.V. A System of Beam Energy Measurement Based on the Compton Backscattered Laser Photons for the VEPP-2000 Electron-Positron/ E.V.Abakumova, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.35-40 .- Bibliogr.:16.
http://dx.doi.org/10.1016/j.nima.2014.01.020.

240.Adamczyk, L. Measurement of the Luminosity in the ZEUS Experiment at HERA II/ L.Adamczyk, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.80-90 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2014.01.053.

241.Belousov, A. CCD Based Beam Loss Monitor for Ion Accelerators/ A.Belousov, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.86-89 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nima.2014.01.003.

242.Prat, E. Symmetric Single-Quadrupole-Magnet Scan Method to Measure the 2D Transverse Beam Parameters/ E.Prat // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.103-108 .- Bibliogr.:11.
http://dx.doi.org/10.1016/j.nima.2014.01.021.

243.Shih, K. A Near-Term Ion-Beam Experiment to Demonstrate Pulse Shortening/ K.Shih, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.11-16 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2014.01.025.

 

С 346.1 НЕЙТРИНО

 

244.Benhar, O. Confronting Electron and Neutrino-Nucleus Interactions: Can the Axial Mass Anomaly Be Resolved?/ O.Benhar // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1430005 .- Bibliogr.:44.
http://dx.doi.org/10.1142/S0218301314300057.

245.Grange, J. Charged Current Quasi-Elastic Cross-Section Measurements in MiniBooNE/ J.Grange, T.Katori // Modern Physics Letters A.-2014.-Vol.29, No.12.-p.1430011 .- Bibliogr.:55.
http://dx.doi.org/10.1142/S0217732314300110.

246.Hayes, A.C. Systematic Uncertainties in the Reactor Neutrino Anomaly/ A.C.Hayes, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.202501 .- Bibliogr.:23.
http://dx.doi.org/10.1103/PhysRevLett.112.202501.

247.Горбаченко, О.М. LiB-нейтронный конвертор для нейтринного источника/ О.М.Горбаченко, В.Н.Кондратьев, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.832-836 .- Библиогр.:23.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070120.pdf.

 

С 346.2 НУКЛОНЫ И АНТИНУКЛОНЫ

 

248.Aaij, R. Study of Beauty Hadron Decays into Pairs of Charm Hadrons/ R.Aaij, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.202001 .- Bibliogr.:38.
http://dx.doi.org/10.1103/PhysRevLett.112.202001.

249.Adlarson, P. Evidence for a New Resonance from Polarized Neutron-Proton Scattering/ P.Adlarson, D.A.Kirillov, N.M.Piskunov, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.202301 .- Bibliogr.:28.
http://dx.doi.org/10.1103/PhysRevLett.112.202301.

250.Li, X. Y(4260) and Y(4360) as Mixed Hadrocharmonium/ X.Li, M.B.Voloshin // Modern Physics Letters A.-2014.-Vol.29, No.12.-p.1450060 .- Bibliogr.:25.
http://dx.doi.org/10.1142/S0217732314500606.

251.Быстрицкий, В.М. Экспериментальное наблюдение эффекта усиления реакции D(p,*g)*3He, протекающей в дейтерированном титане в области ультранизких энергий столновения/ В.М.Быстрицкий, С.С.Паржицкий, А.В.Филиппов, [др.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.65-74 .- Библиогр.:31.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060107.pdf.

 

С 346.6е НОВЫЕ ЧАСТИЦЫ

 

252.Aad, G. Search for Invisible Decays of a Higgs Boson Produced in Association with a Z Boson in ATLAS/ G.Aad, F.Ahmadov, I.N.Aleksandrov, V.A.Bednyakov, I.R.Boyko, I.A.Budagov, G.A.Chelkov, A.Cheplakov, M.V.Chizhov, D.V.Dedovich, M.Demichev, G.L.Glonti, M.I.Gostkin, N.Grigalashvili, N.Huseynov, S.N.Karpov, M.Y.Kazarinov, D.Kharchenko, E.Khramov, V.M.Kotov, U.Kruchonak, Z.V.Krumshteyn, V.Kukhtin, E.Ladygin, I.A.Minashvili, M.Mineev, A.G.Olchevski, V.D.Peshekhonov, E.Plotnikova, I.N.Potrap, V.Pozdnyakov, N.A.Rusakovich, R.Sadykov, A.Sapronov, M.Shiyakova, A.N.Sisakyan, N.D.Topilin, V.B.Vinogradov, A.Zhemchugov, N.I.Zimin, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.201802 .- Bibliogr.:71.
http://dx.doi.org/10.1103/PhysRevLett.112.201802.

253.Mummidi, V.S. A Little More Gauge Mediation and the Light Higgs Mass/ V.S.Mummidi, S.K.Vempati // Nuclear Physics B.-2014.-Vol.881.-p.181-205 .- Bibliogr.:66.
http://dx.doi.org/10.1016/j.nuclphysb.2014.01.014.

254.Villalba-Chavez, S. Laser-Driven Search of Axion-Like Particles Including Vacuum Polarization Effects/ S.Villalba-Chavez // Nuclear Physics B.-2014.-Vol.881.-p.391-413 .- Bibliogr.:93.
http://dx.doi.org/10.1016/j.nuclphysb.2014.01.021.

 

С 347 КОСМИЧЕСКИЕ ЛУЧИ

 

255.Erlykin, A.D. Cosmic Ray Positrons from a Local, Middle-Aged Supernova Remnant/ A.D.Erlykin, A.W.Wolfendale // Astroparticle Physics.-2013.-Vol.49.-p.23-27 .- Bibliogr.:35.
http://dx.doi.org/10.1016/j.astropartphys.2013.08.001.

256.Schmelling, M. Spectrum and Charge Ratio of Vertical Cosmic Ray Muons up to Momenta of 2.5 TeV/c/ M.Schmelling, [et al.] // Astroparticle Physics.-2013.-Vol.49.-p.1-5 .- Bibliogr.:27.
http://dx.doi.org/10.1016/j.astropartphys.2013.07.008.

 

С 348 ЯДЕРНЫЕ РЕАКТОРЫ. РЕАКТОРОСТРОЕНИЕ

 

257.Amharrak, H. State of the Art on Nuclear Heating in a Mixed (n/*g) Field in Research Reactors/ H.Amharrak, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.-p.57-67 .- Bibliogr.:60.
http://dx.doi.org/10.1016/j.nima.2014.02.039.

258.Filliatre, P. In Vessel Detection of Delayed Neutron Emitters from Clad Failure in Sodium Cooled Nuclear Reactors: An Estimation of the Signal/ P.Filliatre, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.1-10 .- Bibliogr.:38.
http://dx.doi.org/10.1016/j.nima.2014.01.043.

259.Greenwood, L.R. Design and Testing of a *1*0B&sub(4)C Capsule for Spectral-Tailoring in Mixed-Spectrum Reactors/ L.R.Greenwood, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.121-123 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2014.01.013.

260.Larsson, I. Qualification of Helium Measurement System for Detection of Fuel Failures in a BWR/ I.Larsson, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.24-37 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2014.01.030.

261.Oklo Reactors and Implications for Nuclear Science // International Journal of Modern Physics E.-2014.-Vol.23, No.4.-p.1430007 .- Bibliogr.:119.
http://dx.doi.org/10.1142/S0218301314300070 .

262.Pivovaroff, M.J. Gamma-Ray Mirrors for Direct Measurement of Spent Nuclear Fuel/ M.J.Pivovaroff, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.109-113 .- Bibliogr.:26.
http://dx.doi.org/10.1016/j.nima.2014.01.005.

263.Рисованый, В.Д. Материалы активной зоны: выстоять в условиях ада/ В.Д.Рисованый // В мире науки.-2014.-No.7/8.-с.106-113.

 

С 349 ДОЗИМЕТРИЯ И ФИЗИКА ЗАЩИТЫ

 

264.Baitha, P.Kr. Dosimetric Sensing and Optical Properties of ZnO-SnO&sub(2) Nanocomposites Synthesized by Co-Precipitation Method/ P.Kr.Baitha, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.91-98 .- Bibliogr.:38.
http://dx.doi.org/10.1016/j.nima.2014.01.041.

265.Fabry, T. The Practical Use of an Interactive Visualization and Planning Tool for Intervention Planning in Particle Accelerator Environments with Ionizing Radiation/ T.Fabry, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.14-21 .- Bibliogr.:34.
http://dx.doi.org/10.1016/j.nima.2013.12.051.

266.Frodyma, N. Observation and Modeling of *2*2*2Rn Daughters in Liquid Nitrogen/ N.Frodyma, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.-p.21-29 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2014.01.039.

267.Grypp, M.D. Design of a Spreader Bar Crane-Mounted Gamma-Ray Radiation Detection System/ M.D.Grypp, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.-p.1-4 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2014.01.015.

 

С 349 д БИОЛОГИЧЕСКОЕ ДЕЙСТВИЕ ИЗЛУЧЕНИЙ.

 

268.Лебедев, В.М. Использование 120-см циклотрона для исследования одновременного воздействия ионизирующего излучения и гипомагнитных условий на простейшие биологические объекты/ В.М.Лебедев, [др.] // Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.-с.842-845 .- Библиогр.:12.
http://link.springer.com/content/pdf/10.3103%2FS1062873814070181.pdf.

 

С 349.1 ДЕЙСТВИЕ ИЗЛУЧЕНИЙ НА МАТЕРИАЛЫ.

 

269.Chen, L. Phase Stability, Grain Growth and Photoluminescence Property of Nanocrystalline Yttria-Stabilized Zirconia Film Under 500 keV Xe*6*+ Ion Irradiation/ L.Chen, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.84-88 .- Bibliogr.:27.
http://dx.doi.org/10.1016/j.nimb.2014.02.117.

270.El Sayed, A.M. Synthesis and Controlling the Optical and Dielectric Properties of CMC/PVA Blend Via *g-Rays Irradiation/ A.M.El Sayed // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.-p.41-48 .- Bibliogr.:57.
http://dx.doi.org/10.1016/j.nimb.2013.12.020.

271.Esirkepov, T.Zh. Prepulse and Amplified Spontaneous Emission Effects on the Interaction of a Petawatt Class Laser with Thin Solid Targets/ T.Zh.Esirkepov, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.150-163 .- Bibliogr.:67.
http://dx.doi.org/10.1016/j.nima.2014.01.056.

272.Jalota, S. Comparative Study of Depth Dose-Distributions and Partial Fragmentation Cross Sections of *5*6Fe Ions on Polyethylene Using GEANT4/ S.Jalota, A.Kumar // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.8-13 .- Bibliogr.:21.
http://dx.doi.org/10.1016/j.nimb.2014.02.017.

273.Sadi, S. Surface Morphology and Phase Stability of Titanium Foils Irradiated with 136 MeV *1*3*6Xe/ S.Sadi, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.78-83 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nimb.2014.02.008.

274.Sina, Y. Ion Beam Induced Epitaxial Crystallization of *a-Al&sub(2)O&sub(3) at Room Temperature/ Y.Sina, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.-p.8-13 .- Bibliogr.:16.
http://dx.doi.org/10.1016/j.nimb.2013.12.012.

275.Skuratov, V.A. TEM Study of Damage Recovery in SiC by Swift Xe Ion Irradiation/ V.A.Skuratov, A.S.Sohatsky, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.327.-p.89-92 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.nima.2013.10.082.

276.Wang, Q. Molecular Dynamics Study on Interfacial Thermal Conductance of Unirradiated and Irradiated SiC/C/ Q.Wang, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.42-47 .- Bibliogr.:40.
http://dx.doi.org/10.1016/j.nimb.2014.03.004.

277.Zhang, Y. Investigation of Unique Total Ionizing Dose Effects in 0.2 *mm Partially-Depleted Silicon-on-Insulator Technology/ Y.Zhang, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.-p.128-132 .- Bibliogr.:19.
http://dx.doi.org/10.1016/j.nima.2014.01.052.

 

С 350 ПРИЛОЖЕНИЯ МЕТОДОВ ЯДЕРНОЙ ФИЗИКИ В СМЕЖНЫХ ОБЛАСТЯХ

 

278.Dolph, M.C. Exploring Cryogenic Focused Ion Beam Milling as a Group III-V Device Fabrication Tool/ M.C.Dolph, C.Santeufemio // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.33-41 .- Bibliogr.:24.
http://dx.doi.org/10.1016/j.nimb.2014.02.126.

279.Huang, J. Contrast Transfer Function in Grating-Based x-Ray Phase-Contrast Imaging/ J.Huang, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.-p.13-18 .- Bibliogr.:25.
http://dx.doi.org/10.1016/j.nima.2014.01.029.

 

С 353 ФИЗИКА ПЛАЗМЫ

 

280.Afanas'ev, V.P. Excited Atoms in Argon Gas Discharge Plasma/ V.P.Afanas'ev, [et al.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-p.160-168 .- Bibliogr.:43.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060089.pdf.

281.Buniy, R.V. Generalized Helicity and Beltrami Fields/ R.V.Buniy, T.W.Kephart // Annals of Physics.-2014.-Vol.344.-p.179-193 .- Bibliogr.:22.
http://dx.doi.org/10.1016/j.aop.2014.02.014.

282.Hu, Q.-L. Modulational Instability of Ultra-Intense Linearly Polarized Laser Pulse in Electron-Positron Plasmas/ Q.-L.Hu, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2594-2597 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.physleta.2013.07.048.

283.Kunz, M.W. Firehose and Mirror Instabilities in a Collisions Shearing Plasma/ M.W.Kunz, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.205003 .- Bibliogr.:52.
http://dx.doi.org/10.1103/PhysRevLett.112.205003.

284.Vieira, J. Hosing Instability Suppression in Self-Modulated Plasma Wakefields/ J.Vieira, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.205001 .- Bibliogr.:28.
http://dx.doi.org/10.1103/PhysRevLett.112.205001.

285.Wang, Y. Dressed Ion Acoustic Solitary Waves in Quantum Plasmas with Two Polarity Ions and Relativistic Electron Beams/ Y.Wang, [et al.] // Physics Letters A.-2013.-Vol.377, No.38.-p.2604-2609 .- Bibliogr.:43.
http://dx.doi.org/10.1016/j.physleta.2013.08.025.

286.Клегг, Б. Создаем Солнце на Земле/ Б.Клегг // Наука в фокусе.-2014.-No.7/8.-с.26-35.

 

С 413 РАДИОХИМИЯ

 

287.Li, J. HEU Age Determination by the Activity Ratio *2*2*7Th/*2*3*5U/ J.Li, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.-p.19-23 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nimb.2013.11.018.

 

С 44 АНАЛИТИЧЕСКАЯ ХИМИЯ

 

288.Smit, Z. Analysis of Garnets from the Archaeological Sites in Slovenia/ Z.Smit, [et al.] // Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.-p.89-94 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nimb.2014.02.121.

 

С 63 АСТРОФИЗИКА

 

289.Bernuzzi, S. Quasiuniversal Properties of Neutron Star Mergers/ S.Bernuzzi, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.201101 .- Bibliogr.:36.
http://dx.doi.org/10.1103/PhysRevLett.112.201101.

290.Chakrabarti, S. I-Q Relation for Rapidity Rotating Neutron Stars/ S.Chakrabarti, [et al.] // Physical Review Letters.-2014.-Vol.112, No.20.-p.201102 .- Bibliogr.:37.
http://dx.doi.org/10.1103/PhysRevLett.112.201102.

291.Кардашев, Н.С. Наблюдательные эффекты в черно-белых дырах (динамических кротовых норах)/ Н.С.Кардашев, [др.] // Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.-с.75-81 .- Библиогр.:17.
http://link.springer.com/content/pdf/10.1134%2FS1063776114060107.pdf.

292.Хокинг, С. Черны ли черные дыры/ С.Хокинг // Наука в фокусе.-2014.-No.7/8.-с.39-43.

 

28.0 БИОЛОГИЯ

 

293.Amir, A. Cell Size Regulation in Bacteria/ A.Amir // Physical Review Letters.-2014.-Vol.112, No.20.-p.208102 .- Bibliogr.:42.
http://dx.doi.org/10.1103/PhysRevLett.112.208102.

294.Straughan, B. Gene-Culture Shock Waves/ B.Straughan // Physics Letters A.-2013.-Vol.377, No.38.-p.2531-2534 .- Bibliogr.:30.
http://dx.doi.org/10.1016/j.physleta.2013.07.025.

295.Uzuntarla, M. Inverse Stochastic Resonance Induced by Synaptic Background Activity with Unreliable Synapses/ M.Uzuntarla // Physics Letters A.-2013.-Vol.377, No.38.-p.2585-2589 .- Bibliogr.:46.
http://dx.doi.org/10.1016/j.physleta.2013.08.009.

 

СПИСОК ПРОСМОТРЕННЫХ ЖУРНАЛОВ

1.Annals of Physics.-2014.-Vol.344.

2.Astroparticle Physics.-2013.-Vol.49.

3.International Journal of Modern Physics E.-2014.-Vol.23, No.4.

4.Modern Physics Letters A.-2014.-Vol.29, No.12.

5.Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.743.

6.Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.744.

7.Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.745.

8.Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.747.

9.Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.749.

10.Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.321.

11.Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.327.

12.Nuclear Instruments & Methods in Physics Research B.-2014.-Vol.328.

13.Nuclear Physics B.-2014.-Vol.881.

14.Physical Review Letters.-2014.-Vol.112, No.20.

15.Physics Letters A.-2013.-Vol.377, No.38.

16.В мире науки.-2014.-No.7/8.

17.Журнал экспериментальной и теоретической физики.-2014.-Т.146, No.1.

18.Известия Российской Академии наук. Серия физическая.-2014.-Т.78, No.7.

19.Наносистемы: физика, химия, математика.-2014.-Т.5, No.3.

20.Наука в фокусе.-2014.-No.7/8.