ИНФОРМАЦИОННЫЙ БЮЛЛЕТЕНЬ «СТАТЬИ»  N.25                        23.06.14

 

С 131 ВЫСШАЯ АЛГЕБРА. ЛИНЕЙНАЯ АЛГЕБРА. ТЕОРИЯ МАТРИЦ

 

1.Henkel, M. Logarithmic Exotic Conformal Galilean Algebras/ M.Henkel, [et al.] // Nuclear Physics B.-2014.-Vol.879.-p.292-317 .- Bibliogr.:49.
http://dx.doi.org/10.1016/j.nuclphysb.2013.12.009.

 

С 135 ФУНКЦИОНАЛЬНЫЙ АНАЛИЗ

 

2.Albeverio, S. Bounds on the Spectrum and Reducing Subspaces of a J-Self-Adjoint Operator/ S.Albeverio, A.K.Motovilov, C.Tretter // Indiana University Mathematics Journal.-2010.-Vol.59, No.5.-p.1737-76 .- Bibliogr.:36.

 

С 321 КЛАССИЧЕСКАЯ МЕХАНИКА

 

3.Bhattacharya, S. Stability and Metastability of Clusters in a Reactive Atmosphere: Theoretical Evidence for Unexpected Stoichiometries of Mg&sub(M)O&sub(x)/ S.Bhattacharya, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.135501 .- Bibliogr.:43.
http://dx.doi.org/10.1103/PhysRevLett.111.135501.

4.Gjerden, K.S. Universality Classes in Constrained Crack Growth/ K.S.Gjerden, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.135502 .- Bibliogr.:29.
http://dx.doi.org/10.1103/PhysRevLett.111.135502.

5.Wang, Y. Dominant Imprint of Rossby Waves in the Climate Network/ Y.Wang, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.138501 .- Bibliogr.:40.
http://dx.doi.org/10.1103/PhysRevLett.111.138501.

 

С 322 ТЕОРИЯ ОТНОСИТЕЛЬНОСТИ

 

6.Blom, M.R. Seismic Attenuation System for the External Injection Bench of the Advanced Virgo Gravitational Wave Detector/ M.R.Blom, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.466-470 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.11.108.

 

С 323 КВАНТОВАЯ МЕХАНИКА

 

7.Bian, Z. Experimental Determination of Ramsey Numbers/ Z.Bian, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130505 .- Bibliogr.:15.
http://dx.doi.org/10.1103/PhysRevLett.111.130505.

8.Christensen, B.G. Detection-Loophole-Free Test of Quantum Nonlocality, and Applications/ B.G.Christensen, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130406 .- Bibliogr.:39.
http://dx.doi.org/10.1103/PhysRevLett.111.130406.

9.de Graaf, S.E. Charge Qubit Coupled to an Intense Microwave Electromagnetic Field in a Superconducting Nb Device: Evidence for Photon-Assisted Quasiparticle Tunneling/ S.E.de Graaf, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137002 .- Bibliogr.:32.
http://dx.doi.org/10.1103/PhysRevLett.111.137002.

10.Ganeshan, S. Exact Classification of Landau-Majorana-Stuckelberg-Zener Resonances by Floquet Determinants/ S.Ganeshan, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130405 .- Bibliogr.:35.
http://dx.doi.org/10.1103/PhysRevLett.111.130405.

11.Kartavtsev, O.I. Recent Advances in Description of Few Two-Component Fermions/ O.I.Kartavtsev, A.V.Malykh // Ядерная физика.-2014.-Т.77, No.4.-p.458-464 .- Bibliogr.:52.
http://link.springer.com/content/pdf/10.1134%2FS1063778814030120.pdf.

12.Kievsky, A. Structure and Dynamics of Few-Helium Clusters Using Soft-Core Potentials/ A.Kievsky, [et al.] // Ядерная физика.-2014.-Т.77, No.4.-p.491-499 .- Bibliogr.:35.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040024.pdf.

13.Kumagai, W. Entanglement Concentration is Irreversible/ W.Kumagai, M.Hayashi // Physical Review Letters.-2013.-Vol.111, No.13.-p.130407 .- Bibliogr.:13.
http://dx.doi.org/10.1103/PhysRevLett.111.130407.

14.Liu, Y. Experimental Measurement-Device-Independent Quantum Key Distribution/ Y.Liu, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130502 .- Bibliogr.:33.
http://dx.doi.org/10.1103/PhysRevLett.111.130502.

15.Melezhik, V.S. Nondirect Product Discrete-Variable Representation in Low-Dimensional Few-Body Problems/ V.S.Melezhik // Ядерная физика.-2014.-Т.77, No.4.-p.474-480 .- Bibliogr.:36.
http://link.springer.com/content/pdf/10.1134%2FS106377881404005X.pdf.

16.Noh, J.D. Multiple Dynamic Transitions in Nonequilibrium Work Fluctuations/ J.D.Noh, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130601 .- Bibliogr.:41.
http://dx.doi.org/10.1103/PhysRevLett.111.130601.

17.Tusnski, D.S. Continuum Resonances with Shielded Coulomb-Like Potential and Efimov Effect/ D.S.Tusnski, [et al.] // Ядерная физика.-2014.-Т.77, No.4.-p.533-537 .- Bibliogr.:27.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040152.pdf.

18.Wang, D.-S. Solovay-Kitaev Decomposition Strategy for Single-Qubit Channels/ D.-S.Wang, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130504 .- Bibliogr.:48.
http://dx.doi.org/10.1103/PhysRevLett.111.130504.

19.Коптелов, Я.Ю. Об асимптотике задачи рассеяния нескольких заряженных квантовых частиц с отталкивательными парными потенциалами/ Я.Ю.Коптелов, С.Б.Левин // Ядерная физика.-2014.-Т.77, No.4.-с.557-565 .- Библиогр.:18.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040036.pdf.

20.Пеньков, Ф.М. Дифференциальные уравнения в импульсном пространстве для задачи трех тел с точечными парными взаимодействиями/ Ф.М.Пеньков, В.Зандхас // Ядерная физика.-2014.-Т.77, No.4.-с.566-574 .- Библиогр.:16.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040085.pdf.

21.Славнов, Д.А. Мягкий кубит/ Д.А.Славнов // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-с.513-527 .- Библиогр.:17.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/14_slav.pdf.

 

С 323.2 ЗАКОНЫ СОХРАНЕНИЯ И ОБЩИЕ ТЕОРИИ РЕАКЦИЙ. ПОЛЯРИЗАЦИОННЫЕ ЭФФЕКТЫ. ИНВАРИАНТНОЕ РАЗЛОЖЕНИЕ АМПЛИТУД

 

22.Pospelov, M. Comments on CPT/ M.Pospelov // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.105-114 .- Bibliogr.:16.
http://dx.doi.org/10.1007/s10751-012-0582-y.

23.Кельвич, С.А. Путь к быстрым вычислениям к квантовой теории рассеяния/ С.А.Кельвич, [др.] // Ядерная физика.-2014.-Т.77, No.4.-с.466-473 .- Библиогр.:7.
http://link.springer.com/content/pdf/10.1134%2FS1063778814030132.pdf.

24.Мотовилов, А.К. Собственные векторы многоканальной матрицы рассеяния при резонансных значениях энергии/ А.К.Мотовилов // Ядерная физика.-2014.-Т.77, No.4.-с.481-490 .- Библиогр.:22.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040061.pdf.

25.Рубцова, О.А. Решение многоканальной задачи рассеяния на основе метода дискретных спектральных сдвигов/ О.А.Рубцова, [др.] // Ядерная физика.-2014.-Т.77, No.4.-с.514-524 .- Библиогр.:16.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040127.pdf.

 

С 323.5 ТЕОРИЯ ВЗАИМОДЕЙСТВИЯ ЧАСТИЦ ПРИ ВЫСОКИХ ЭНЕРГИЯХ

 

26.Selyugin, O.V. Total Cross Sections and p at High Energy/ O.V.Selyugin // Nuclear Physics A.-2014.-Vol.922.-p.180-190 .- Bibliogr.:21.
http://dx.doi.org/10.1016/j.nuclphysa.2013.12.002.

 

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

 

27.Bednyakov, A.V. Three-Loop Higgs Self-Coupling Beta-Function in the Standard Model with Complex Yukawa Matrices/ A.V.Bednyakov, A.F.Pikelner, V.N.Velizhanin // Nuclear Physics B.-2014.-Vol.879.-p.256-267 .- Bibliogr.:37.
http://dx.doi.org/10.1016/j.nuclphysb.2013.12.012.

 

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

 

28.Block, M.S. Fate of CP&sup(N-1) Fixed Points with q Monopoles/ M.S.Block, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137202 .- Bibliogr.:41.
http://dx.doi.org/10.1103/PhysRevLett.111.137202.

 

С 324.1е СУПЕРСИММЕТРИЧНЫЕ ТЕОРИИ. СУПЕРГРАВИТАЦИЯ. СУПЕРСТРУНЫ

 

29.Feng, J.L. Three-Loop Corrections to the Higgs Boson Mass and Implications for Supersymmetry at the LHC/ J.L.Feng, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.131802 .- Bibliogr.:34.
http://dx.doi.org/10.1103/PhysRevLett.111.131802.

30.Hoare, B. Giant Magnon Solution and Dispersion Relation in String Theory in AdS&sub(3) x S*3 x T*4 with Mixed Flux/ B.Hoare, [et al.] // Nuclear Physics B.-2014.-Vol.879.-p.318-347 .- Bibliogr.:46.
http://dx.doi.org/10.1016/j.nuclphysb.2013.12.011.

 

С 325 СТАТИСТИЧЕСКАЯ ФИЗИКА И ТЕРМОДИНАМИКА

 

31.Braunecker, B. Entanglement Detection from Conductance Measurements in Carbon Nanotube Cooper Pair Splitters/ B.Braunecker, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.136806 .- Bibliogr.:25.
http://dx.doi.org/10.1103/PhysRevLett.111.136806.

32.Cao, J. Off-Diagonal Bethe Ansatz and Exact Solution of a Topological Spin Ring/ J.Cao, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137201 .- Bibliogr.:24.
http://dx.doi.org/10.1103/PhysRevLett.111.137201.

33.Cleuziou, J.P. Interplay of the Kondo Effect and Strong Spin-Orbit Coupling in Multihole Ultraclean Carbon Nanotubes/ J.P.Cleuziou, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.136803 .- Bibliogr.:32.
http://dx.doi.org/10.1103/PhysRevLett.111.136803.

34.Genway, S. Dynamics of Termalization and Decoherence of a Nanoscale System/ S.Genway, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130408 .- Bibliogr.:50.
http://dx.doi.org/10.1103/PhysRevLett.111.130408.

35.Milletari, M. Shot-Noise Signatures of Charge Fractionalization in the *n=2 Quantum Hall Edge/ M.Milletari, B.Rosenow // Physical Review Letters.-2013.-Vol.111, No.13.-p.136807 .- Bibliogr.:36.
http://dx.doi.org/10.1103/PhysRevLett.111.136807.

36.Mu, J. Photoluminescence of Single-Walled Carbon Nanotubes: The Role of Stokes Shift and Impurity Levels/ J.Mu, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137401 .- Bibliogr.:22.
http://dx.doi.org/10.1103/PhysRevLett.111.137401.

37.Sattar, A. Quantized Conductance and Switching in Percolating Nanoparticle Films/ A.Sattar, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.136808 .- Bibliogr.:34.
http://dx.doi.org/10.1103/PhysRevLett.111.136808.

38.Vialla, F. Chirality Dependence of the Absorption Cross Section of Carbon Nanotubes/ F.Vialla, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137402 .- Bibliogr.:32.
http://dx.doi.org/10.1103/PhysRevLett.111.137402.

39.Wang, Z.T. Densification and Strain Hardening of a Metallic Glass under Tension at Room Temperature/ Z.T.Wang, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.135504 .- Bibliogr.:35.
http://dx.doi.org/10.1103/PhysRevLett.111.135504.

40.Броздниченко, А.Н. Морфология поверхности и проводимость алмазоподобных пленок, выращенных ионно-плазменным методом на танталовой подложке/ А.Н.Броздниченко, [др.] // Поверхность.-2014.-No.4.-с.18-23 .- Библиогр.:19.
http://www.maikonline.com/maik/showArticle.do?auid=VAHTVECIWQ.

 

С 325.1 ТОЧНО РЕШАЕМЫЕ И РЕШЕТОЧНЫЕ МОДЕЛИ.

 

41.Band, R. Universality of the Momentum Band Density of Periodic Networks/ R.Band, G.Berkolaiko // Physical Review Letters.-2013.-Vol.111, No.13.-p.130404 .- Bibliogr.:40.
http://dx.doi.org/10.1103/PhysRevLett.111.130404.

42.Biswas, R.R. Majorana Fermions in Vortex Lattices/ R.R.Biswas // Physical Review Letters.-2013.-Vol.111, No.13.-p.136401 .- Bibliogr.:23.
http://dx.doi.org/10.1103/PhysRevLett.111.136401.

43.Evans, M.E. Networklike Propagation of Cell-Level Stress in Sheared Random Foams/ M.E.Evans, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.138301 .- Bibliogr.:41.
http://dx.doi.org/10.1103/PhysRevLett.111.138301.

44.Fernandes, R.M. Scaling Between Magnetic and Lattice Fluctuations in Iron Pnictide Superconductors/ R.M.Fernandes, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137001 .- Bibliogr.:50.
http://dx.doi.org/10.1103/PhysRevLett.111.137001.

45.Frahm, H. The Staggered Six-Vertex Model: Conformal Invariance and Corrections to Scaling/ H.Frahm, A.Seel // Nuclear Physics B.-2014.-Vol.879.-p.382-406 .- Bibliogr.:48.
http://dx.doi.org/10.1016/j.nuclphysb.2013.12.015.

46.Hou, J.-M. Hidden-Symmetry-Protected Topological Semimetals on a Square Lattice/ J.-M.Hou // Physical Review Letters.-2013.-Vol.111, No.13.-p.130403 .- Bibliogr.:34.
http://dx.doi.org/10.1103/PhysRevLett.111.130403.

47.Kundu, A. Transport Signatures of Floquet Majorana Fermions in Driven Topological Superconductors/ A.Kundu, B.Seradjeh // Physical Review Letters.-2013.-Vol.111, No.13.-p.136402 .- Bibliogr.:49.
http://dx.doi.org/10.1103/PhysRevLett.111.136402.

48.Nishida, Y. SU(3) Orbital Kondo Effect with Ultracold Atoms/ Y.Nishida // Physical Review Letters.-2013.-Vol.111, No.13.-p.135301 .- Bibliogr.:39.
http://dx.doi.org/10.1103/PhysRevLett.111.135301.

 

С 325.4 НЕЛИНЕЙНЫЕ СИСТЕМЫ. ХАОС И СИНЕРГЕТИКА. ФРАКТАЛЫ

 

49.Gu, C. Spiral Wave Chimeras in Complex Oscillatory and Chaotic Systems/ C.Gu, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.134101 .- Bibliogr.:33.
http://dx.doi.org/10.1103/PhysRevLett.111.134101.

 

С 326 КВАНТОВАЯ ТЕОРИЯ СИСТЕМ ИЗ МНОГИХ ЧАСТИЦ.КВАНТОВАЯ СТАТИСТИКА

 

50.Bogoliubov, N.M. Correlation Functions of XX0 Heisenberg Chain, q-Binomial Determinants, and Random Walks/ N.M.Bogoliubov, C.Malyshev // Nuclear Physics B.-2014.-Vol.879.-p.268-291 .- Bibliogr.:57.
http://dx.doi.org/10.1016/j.nuclphysb.2013.12.010.

51.d'Ambrumenil, N. Thermopower in the Quantum Hall Regime/ N.d'Ambrumenil, R.H.Morf // Physical Review Letters.-2013.-Vol.111, No.13.-p.136805 .- Bibliogr.:14.
http://dx.doi.org/10.1103/PhysRevLett.111.136805.

52.Dauphin, A. Extracting the Chern Number from the Dynamics of a Fermi Gas: Implementing a Quantum Hall Bar for Cold Atoms/ A.Dauphin, N.Goldman // Physical Review Letters.-2013.-Vol.111, No.13.-p.135302 .- Bibliogr.:59.
http://dx.doi.org/10.1103/PhysRevLett.111.135302.

53.Grover, T. Entanglement of Interacting Fermions in Quantum Monte Carlo Calculations/ T.Grover // Physical Review Letters.-2013.-Vol.111, No.13.-p.130402 .- Bibliogr.:53.
http://dx.doi.org/10.1103/PhysRevLett.111.130402.

54.Guan, X.-W. Wilson Ratio of Fermi Gases in One Dimension/ X.-W.Guan, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130401 .- Bibliogr.:33.
http://dx.doi.org/10.1103/PhysRevLett.111.13401.

55.Lake, B. Multispinon Continua at Zero and Finite Temperature in a Near-Ideal Heisenberg Chain/ B.Lake, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137205 .- Bibliogr.:54.
http://dx.doi.org/10.1103/PhysRevLett.111.137205.

56.Parrish, R.M. Exact Tensor Hypercontraction: A Universal Technique for the Resolution of Matrix Elements of Local Finite-Range N-Body Potentials in Many-Body Quantum Problems/ R.M.Parrish, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.132505 .- Bibliogr.:31.
http://dx.doi.org/10.1103/PhysRevLett.111.132505.

57.Shen, K. Collective Spin Hall Effect for Electron-Hole Gratings/ K.Shen, G.Vignale // Physical Review Letters.-2013.-Vol.111, No.13.-p.136602 .- Bibliogr.:44.
http://dx.doi.org/10.1103/PhysRevLett.111.136602.

58.Wang, J. Quantum Anomalous Hall Effect with Higher Plateaus/ J.Wang, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.136801 .- Bibliogr.:34.
http://dx.doi.org/10.1103/PhysRevLett.111.136801.

59.Xu, Y. Large-Gap Quantum Spin Hall Insulators in Tin Films/ Y.Xu, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.136804 .- Bibliogr.:38.
http://dx.doi.org/10.1103/PhysRevLett.111.136804.

 

С 33 а НАНОФИЗИКА. НАНОТЕХНОЛОГИЯ

 

60.Hamel, A. The Influence of the Opening Between the Heads of the Two Closest Pyramids in Textured Surface for Solar Cells and its Application on the Spectral Response/ A.Hamel // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.451-457 .- Bibliogr.:23.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/09_hamel.pdf.

 

С 332 ЭЛЕКТРОМАГНИТНЫЕ ВЗАИМОДЕЙСТВИЯ

 

61.Kronwald, A. Optomechanically Induced Transparency in the Nonlinear Quantum Regime/ A.Kronwald, F.Marquardt // Physical Review Letters.-2013.-Vol.111, No.13.-p.133601 .- Bibliogr.:41.
http://dx.doi.org/10.1103/PhysRevLett.111.133601.

62.Seifert, J. Surface Structure of Alanine on Cu(110) Studied by Fast Atom Diffraction/ J.Seifert, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.137601 .- Bibliogr.:42.
http://dx.doi.org/10.1103/PhysRevLett.111.137601.

63.Spagnolo, N. General Rules for Bosonic Bunching in Multimode Interferometers/ N.Spagnolo, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.130503 .- Bibliogr.:32.
http://dx.doi.org/10.1103/PhysRevLett.111.130503.

64.Tichit, P.-H. Experimental Verification of Isotropic Radiation from a Coherent Dipole Source via Electric-Field-Driven LC Resonator Metamaterials/ P.-H.Tichit, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.133901 .- Bibliogr.:40.
http://dx.doi.org/10.1103/PhysRevLett.111.133901.

65.Алексеев, В.И. Диагностика нанодисперсных поликристаллов на основе поляризационного тормозного излучения релятивистских электронов/ В.И.Алексеев, [др.] // Поверхность.-2014.-No.4.-с.46-49 .- Библиогр.:9.
http://www.maikonline.com/maik/showArticle.do?auid=VAHTVED7QB.

66.Ишмухамедов, И.С. Описание ультрахолодных атомов в одномерной геометрии гармонической ловушки с реалистическим взаимодействием / И.С.Ишмухамедов, Д.С.Валиолда, С.А.Жаугашева // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-с.390-400 .- Библиогр.:11.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/03_ishmuk.pdf.

67.Павленко, В.И. Суммарные потери энергии релятивистского электрона при прохождении через полимерный композиционный материал/ В.И.Павленко, [др.] // Поверхность.-2014.-No.4.-с.101-106 .- Библиогр.:9.
http://www.maikonline.com/maik/showArticle.do?auid=VAHTVEDF9L.

 

С 341 АТОМНЫЕ ЯДРА

 

68.Mariji, H. The Effect of Fermi Momentum Cutoff on the Binding Energy of Closed-Shell Nuclei in the LOCV Framework/ H.Mariji, M.Modarres // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.401-411 .- Bibliogr.:22.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/04_mar.pdf.

69.Sang, H.Y. Two 0*+ Excited States in *4*0Ca with Diabatic and Adiabatic Constrained Approaches/ H.Y.Sang, [et al.] // International Journal of Modern Physics E.-2014.-Vol.23, No.1.-p.1450003 .- Bibliogr.:32.
http://dx.doi.org/10.1142/S0218301314500037.

70.Гринюк, Б.Е. Структурные свойства четырехкластерных ядер *1*0Be и *1*0C/ Б.Е.Гринюк, И.В.Сименог // Ядерная физика.-2014.-Т.77, No.4.-с.443-451 .- Библиогр.:20.
http://link.springer.com/content/pdf/10.1134%2FS1063778814030090.pdf.

 

С 341.1 РАДИОАКТИВНОСТЬ

 

71.Miernik, K. Large *b-Delayed One and Two Neutron Emission Rates in the Decay of *8*6Ga/ K.Miernik, I.N.Borzov, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.132502 .- Bibliogr.:27.
http://dx.doi.org/10.1103/PhysRevLett.111.132502.

 

С 342 ПРОХОЖДЕНИЕ ЧАСТИЦ И ГАММА-КВАНТОВ ЧЕРЕЗ ВЕЩЕСТВО

 

72.Дидык, А.Ю. Результаты по облучению нержавеющей стали и меди *g-квантами с энергией 23 МэВ в атмосфере молекулярного дейтерия при давлении 2 кбар/ А.Ю.Дидык, Р.Вишневский // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-с.491-512 .- Библиогр.:20.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/13_did.pdf.

 

С 342 г1 ЗАМЕДЛЕНИЕ И ДИФФУЗИЯ НЕЙТРОНОВ. ДИФРАКЦИЯ.

 

73.Артемьев, А.Н. Дифракция Дебая-Шеррера в геометрии обратного рассеяния на Курчатовском источнике СИ. Чаcть II. Аппаратура, экспериментальные результаты, обработка/ А.Н.Артемьев, С.И.Тютюнников, В.Н.Шаляпин, [др.] // Поверхность.-2014.-No.4.-с.76-82 .- Библиогр.:9.
http://dx.doi.org/10.1134/S1027451014010054.

 

С 343 ЯДЕРНЫЕ РЕАКЦИИ

 

74.Tran, Duc Thiep. The Isomeric Ratios in *1*0*7Ag(*g,n)&sup(106m,g)Ag Photonuclear Reaction Induced in the Giant Dipole Resonance Region/ Duc ThiepёTran, A.G.Belov, O.D.Maslov, [et al.] // Nuclear Science and Technology.-2013.-Vol.3, No.2.-p.39-46 .- Bibliogr.:28.

 

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

 

75.Girija, K.K. Role of Shape and Quadrupole Deformation of Parents in the Cluster Emission of Rare Earth Nuclei/ K.K.Girija, A.Joseph // International Journal of Modern Physics E.-2014.-Vol.23, No.1.-p.1450002 .- Bibliogr.:48.
http://dx.doi.org/10.1142/S0218301314500025.

76.Irgaziev, B.F. Estimation of the Nuclear Distorption in the Coulomb Breakup of *6Li into *a + d in the Field of *2*0*8Pb Ion/ B.F.Irgaziev // Ядерная физика.-2014.-Т.77, No.4.-p.452-457 .- Bibliogr.:19.
http://link.springer.com/content/pdf/10.1134%2FS1063778814030119.pdf.

77.Lovejot. Directed Transverse Flow and its Disappearance for Asymmetric Reactions/ Lovejot, S.Gautam // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.381-389 .- Bibliogr.:22.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/02_lov.pdf.

78.Sagaidak, R. Effects of Beam Energy Distribution on Fusion-Evaporation Excitation Functions/ R.Sagaidak, A.Andreyev // International Journal of Modern Physics E.-2014.-Vol.23, No.1.-p.1450001 .- Bibliogr.:22.
http://dx.doi.org/10.1142/S0218301314500013.

79.Shebeko, A.V. Towards Gauge-Independent Treatment of Radiative Capture in Nuclear Reactions: Applications to Low-Energy Cluster-Cluster Collisions/ A.V.Shebeko // Ядерная физика.-2014.-Т.77, No.4.-p.547-556 .- Bibliogr.:19.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040139.pdf.

80.Zakaria, M.M.M. Optical Model Analysis of p+*6He Scattering Over a Wide Range of Energy/ M.M.M.Zakaria, [et al.] // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.363-380 .- Bibliogr.:44.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/01_2_zak.pdf.

81.Орлов, Ю.В. Ядерные вершинные константы и асимптотические нормированные коэффициенты резонансных состояний *8Be из разложений эффективного радиуса для *a*a-рассеяния/ Ю.В.Орлов, Л.И.Никитина // Ядерная физика.-2014.-Т.77, No.4.-с.507-513 .- Библиогр.:16.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040073.pdf.

 

С 343 е ЯДЕРНЫЕ РЕАКЦИИ С ТЯЖЕЛЫМИ ИОНАМИ

 

82.Tuchin, K. Electromagnetic Fields in High Energy Heavy-Ion Collisions/ K.Tuchin // International Journal of Modern Physics E.-2014.-Vol.23, No.1.-p.1430001 .- Bibliogr.:68.
http://dx.doi.org/10.1142/S021830131430001X.

83.Ковивчак, В.С. Модификация поликристаллических оксидов SnO&sub(2) и ZnO мощным ионным пучком наносекундной длительности/ В.С.Ковивчак, [др.] // Поверхность.-2014.-No.4.-с.50-55 .- Библиогр.:11.
http://www.maikonline.com/maik/showArticle.do?auid=VAHTVED7QB.

 

С 344.1 МЕТОДЫ И АППАРАТУРА ДЛЯ РЕГИСТРАЦИИ ЭЛЕМЕНТАРНЫХ ЧАСТИЦ

 

84.Aramo, C. Progress on the Development of a Silicon-Carbon Nanotube Photodetector/ C.Aramo, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.554-556 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.10.107.

85.Arnaud, N. A Particle Identification Detector for the Forward Region of the SuperB Experiment/ N.Arnaud, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.557-559 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.11.115.

86.Batusov, V. The Laser Reference Line Method and its Comparison to a Total Station in an ATLAS-Like Configuration/ V.Batusov, J.Budagov, M.Lyablin, [et al.] // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.476-490 .- Bibliogr.:11.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/12_bat.pdf.

87.Bindi, V. The Time of Flight Detector of the AMS-02 Experiment on the International Space Station/ V.Bindi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.478-480 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.11.061.

88.Budagov, J. A Laser-Based Fiducial Line for High-Precision Multipoint Alignment System/ J.Budagov, V.Glagolev, M.Lyablin, G.Shirkov, [et al.] // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.458-468 .- Bibliogr.:11.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/10_bud_1.pdf.

89.Creusot, A. The Antares Detector/ A.Creusot // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.489-491 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.11.071.

90.Della Valle, F. The New PVLAS Apparatus for Detection of Magnetic Birefringence of Vacuum/ F.Della Valle, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.495-496 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.084.

91.Faverzani, M. Microresonator Detectors for Neutrino Physics in Milano/ M.Faverzani, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.492-494 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.060.

92.Gargano, F. Study of H-8500 MaPMT for the FDIRC Detector at SuperB/ F.Gargano, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.563-565 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.123.

93.Gervino, G. Preliminary Results of a New Boron Coated Neutron Detector/ G.Gervino, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.143-144 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.08.092.

94.Gironi, L. Surface Induced Background in CUORE/ L.Gironi // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.497-498 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.065.

95.Gligorov, V.V. Performance and Upgrade Plans of the LHCb Trigger System/ V.V.Gligorov // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.26-29 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.08.076.

96.Grasso, R. New bi-Dimensional SPAD Arrays for Time Resolved Single Photon Imaging/ R.Grasso, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.566-568 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.11.136.

97.Gundacker, S. SiPM Time Resolution: From Single Photon to Saturation/ S.Gundacker, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.569-572 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2013.01.047.

98.Jeitler, M. Upgrade of the Trigger System of CMS/ M.Jeitler // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.11-15 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.08.091.

99.Koperny, S. Operation of Proportional Counters Under High Gas Gain, High Working Gas Pressure in Mixed Field of Radiation/ S.Koperny, T.Z.Kowalski // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.575-576 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.137.

100.Larosa, G. Acoustic Position Calibration of the KM3NeT Neutrino Telescope/ G.Larosa, M.Ardid // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.502-503 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.176.

101.Lefeuvre, G. From SNO to SNO+, Upgrading a Neutrino Experiment/ G.Lefeuvre // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.506-508 .- Bibliogr.:1.
http://dx.doi.org/10.1016/j.nima.2012.11.062.

102.Lohner, H. The Multi-PMT Optical Module for KM3NeT/ H.Lohner, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.513-515 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.049.

103.Makankin, A.M. A Direct Time Measurement Technique for the Two-Dimensional Precision Coordinate Detectors Based on Thin-Walled Drift Tubes/ A.M.Makankin, V.V.Myalkovskiy, V.D.Peshekhonov, S.Ritt, S.E.Vasilyev // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.735.-p.649-654 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2013.10.003.

104.Medinaceli, E. NESSiE: An Experimental Search for Sterile Neutrinos with the CERN-SPS Beam/ E.Medinaceli // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.516-518 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.01.059.

105.Meschini, M. Performance and Upgrade Plans for the CMS Detector/ M.Meschini // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.1-6 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.08.077.

106.Naka, T. Fine Grained Nuclear Emulsion for Higher Resolution Tracking Detector/ T.Naka, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.519-521 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.106.

107.Pastore, F. Upgrade Project and Plans for the ATLAS Detector and Trigger/ F.Pastore // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.7-10 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.08.063.

108.Previtali, E. Search for Neutrinoless Double Beta Decay with CUORE/ E.Previtali // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.522-523 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.141.

109.Va'vra, J. Progress on Development of the New FDIRC PID Detector/ J.Va'vra, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.541-545 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.11.112.

110.Zhu, W. A Thin Float Glass MRPC for the Outer Region of CBM-TOF Wall/ W.Zhu, V.Babkin, M.Rumiantсev, [a.o.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.735.-p.277-282 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2013.09.044.

 

С 344.1ж СЦИНТИЛЛЯЦИОННЫЕ СЧЕТЧИКИ И КАМЕРЫ.

 

111.Babusci, D. The KLOE-2 High Energy Tagger Detector/ D.Babusci, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.577-579 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.09.034.

112.Barbarino, G. Vacuum Silicon Photomultipliers: Recent Developments/ G.Barbarino, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.582-583 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.175.

113.Cardani, L. Study of Rare Alpha Decays with Scintillating Bolometers/ L.Cardani // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.487-488 .- Bibliogr.:11.
http://dx.doi.org/10.1016/j.nima.2012.11.055.

114.Galli, L. Timing Resolution Measurements of a 3 in. Lanthanum Bromide Detector/ L.Galli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.48-51 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nima.2012.07.052.

115.Gironi, L. Pulse Shape Analysis with Scintillating Bolometers/ L.Gironi // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.546-549 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2012.11.118.

116.Heidt, C. The Tracker Systems for the Muon Ionization Cooling Experiment/ C.Heidt // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.560-562 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.030.

117.Kalinnikov, V. Investigation of LYSO and GSO Crystals and Simulation of the Calorimeter for COMET Experiment/ V.Kalinnikov, E.Velicheva // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.418-430 .- Bibliogr.:9.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/06_kalin.pdf.

118.Lavagno, A. Study of Linearity and Internal Background for LaBr&sub(3)(Ce) *g-Ray Scintillation Detector/ A.Lavagno, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.504-505 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.11.024.

119.Lehmann, A. Significantly Improved Lifetime of Micro-Channel Plate PMTs/ A.Lehmann, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.535-540 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2012.11.109.

120.Leverington, B. Particle Trackers Based on 1 mm and 0.7 mm Scintillating Fibers Readout by a Multi-Anode Photomultiplier/ B.Leverington, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.509-512 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.12.051.

121.Sidletskiy, O. Evaluation of LGSO:Ce Scintillator for High Energy Physics Experiments/ O.Sidletskiy, A.Artikov, V.Baranov, J.Budagov, V.Glagolev, Yu.Davydov, V.Tereshchenko, [a.o.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.735.-p.620-623 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2013.10.012.

 

С 344.1и ИСКРОВЫЕ КАМЕРЫ.СТРИМЕРНЫЕ КАМЕРЫ.

 

122.Camarri, P. ARGO-YBJ: Physics Results and Detector Stabilization/ P.Camarri // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.483-486 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.11.064.

 

С 344.1и2 ДРЕЙФОВЫЕ КАМЕРЫ.

 

123.Abbaneo, D. GEM Based Detector for Future Upgrade of the CMS Forward Muon System/ D.Abbaneo, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.383-386 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2012.10.058.

124.Abuhoza, A. Setup Optimization Toward Accurate Ageing Studies of Gas Filled Detectors/ A.Abuhoza, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.400-402 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.08.045.

125.Alexeev, G.D. The Thin-Wall Tube Drift Chamber Operating in Vacuum (prototype)/ G.D.Alexeev, L.N.Glonti, V.D.Kekelidze, V.L.Malyshev, A.A.Piskun, Yu.K.Potrebenikov, V.K.Rodionov, V.A.Samsonov, V.V.Tokmenin, S.N.Shkarovskiy // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.421-423 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.10.053.

126.Arneodo, F. The XENON100 Experiment and the Evolution to the Ton Scale/ F.Arneodo // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.450-453 .- Bibliogr.:17.
http://dx.doi.org/10.1016/j.nima.2012.11.058.

127.Assiro, R. Ultra-Low Mass Drift Chambers/ R.Assiro, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.443-445 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.10.047.

128.Balla, A. Production and Test of the First Two Layers of the KLOE-2 Inner Tracker/ A.Balla, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.416-417 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.10.006.

129.Basile, E. Production Status of the JLAB Hall-A GEM and Si *mstrip Tracker/ E.Basile, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.429-431 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.10.090.

130.Bernard, D. HARPO - A Gaseous TPC for High Angular Resolution *g-Ray Astronomy and Polarimetry from the MeV to the TeV/ D.Bernard // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.395-399 .- Bibliogr.:14.
http://dx.doi.org/10.1016/j.nima.2012.10.054.

131.Biswas, S. Study of the Characteristics of GEM Detectors for the Future FAIR Experiment CBM/ S.Biswas, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.403-405 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.08.044.

132.Bortfeldt, J. High-Resolution Micromegas Telescope for Pion- and Muon-Tracking/ J.Bortfeldt, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.406-408 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.08.070.

133.Cascella, M. Ultra-Light Gas Mixtures for Drift Chambers/ M.Cascella, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.409-411 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.10.005.

134.Charles, G. Micromegas Detectors for CLAS12/ G.Charles // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.414-415 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.08.060.

135.Cimmino, A. Operations and Performance of the CMS RPC Muon System at LHC/ A.Cimmino // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.412-413 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.12.162.

136.Dubey, A.K. GEM Detector Development for CBM Experiment at FAIR/ A.K.Dubey, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.418-420 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.043.

137.Haddad, Y. High Rate Resistive Plate Chamber for LHC Detector Upgrades/ Y.Haddad, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.424-426 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.029.

138.Jowzaee, S. Particle Identification Using the Time-Over-Threshold Measurements in Straw Tube Detectors/ S.Jowzaee, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.573-574 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.119.

139.Krautscheid, T. Gridpix: Production and Application of Integrated Pixel Readouts/ T.Krautscheid, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.391-394 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.10.055.

140.Kroha, H. Construction and Test of a Full Prototype Drift-Tube Chamber for the Upgrade of the ATLAS Muon Spectrometer at High LHC Luminosities/ H.Kroha, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.427-428 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.08.055.

141.Lorca, D. The NEXT Experiment: A High Pressure Xenon Gas TPC for Neutrinoless Double Beta Decay Searches/ D.Lorca, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.387-390 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.10.048.

142.McConkey, N. Liquid Scintillator Time Projection Chamber Concept/ N.McConkey, Y.A.Ramachers // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.459-461 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2012.11.047.

143.Pocar, A. Neutrinoless Double Beta Decay Search with EXO-200/ A.Pocar // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.462-465 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2012.01.050.

144.Sahin, O. Secondary Avalanches in Gas Mixtures/ O.Sahin, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.432-433 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.08.067.

145.Schon, R. Operating the GridPix Detector in Dark Matter Search Experiments/ R.Schon, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.446-449 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.054.

146.Segui, L. NEXT Prototypes Based on Micromegas/ L.Segui // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.434-436 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.10.044.

147.Seo, H. RPC Hit Contribution to CMS Muon Reconstruction at LHC/ H.Seo // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.437-439 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.08.056.

148.Spada, F.R. Operation of the AMS-02 TRD in Space/ F.R.Spada // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.440-442 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.10.049.

149.Zeller, M. First Measurements with ARGONTUBE, a 5 m Long Drift Liquid Argon TPC/ M.Zeller, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.454-458 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.11.181.

150.Давков, К.И. Режим работы тонкостенных дрейфовых трубок высокого давления с высоким пространственным разрешением/ К.И.Давков, В.В.Мялковский, В.Д.Пешехонов, В.Д.Чолаков // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-с.431-438 .- Библиогр.:8.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/07_dav.pdf.

 

С 344.1м ПОЛУПРОВОДНИКОВЫЕ ДЕТЕКТОРЫ.

 

151.Abt, I. Bulk and Surface Effects in Segmented High Purity Germanium Detectors/ I.Abt, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.533-534 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.11.114.

152.Ahmed, M.I. Measurement Results of DIPIX Pixel Sensor Developed in SOI Technology/ M.I.Ahmed, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.274-278 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.10.099.

153.Andreotti, E. Characterization of BEGe Detectors in the HADES Underground Laboratory/ E.Andreotti // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.475-477 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.11.053.

154.Bergauer, T. Recent Progress in Sensor- and Mechanics-R&D for the Belle II Silicon Vertex Detector/ T.Bergauer, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.279-282 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.10.022.

155.Bhardwaj, A. The CMS Tracker Alignment in pp Collisions/ A.Bhardwaj, K.Ranjan // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.292-294 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.009.

156.Bissi, L. The Calibration of a Pixel Sensor Using Both Fluorescence and Transmitted X-Ray Photons/ L.Bissi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.336-338 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.10.092.

157.Boscardin, M. Development of Thin Pixel Detectors on Epitaxial Silicon for HEP Experiments/ M.Boscardin, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.295-296 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.100.

158.Boscardin, M. Silicon Buried Channels for Pixel Detector Cooling/ M.Boscardin, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.297-298 .- Bibliogr.:1.
http://dx.doi.org/10.1016/j.nima.2012.10.014.

159.Calvo, D. The Silicon Micro Vertex Detector of the PANDA Experiment/ D.Calvo // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.39-42 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.08.093.

160.Cardarelli, R. A Beam Radiation Monitor Based on CVD Diamonds for SuperB/ R.Cardarelli, A.Di Ciaccio // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.307-309 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.10.085.

161.Ciciriello, F. Accurate Modeling of SiPM Detectors Coupled to FE Electronics for Timing Performance Analysis/ F.Ciciriello, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.331-333 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.10.103.

162.Cooke, M. Monitoring the Radiation Damage of the ATLAS Pixel Detector/ M.Cooke // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.299-301 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.10.029.

163.Dalla Betta, G.F. Functional Test of a Radon Sensor Based on a High-Resistivity-Silicon BJT Detector/ G.F.Dalla Betta, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.302-304 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.10.097.

164.Deveaux, M. A First Generation Prototype for the CBM Micro Vertex Detector/ M.Deveaux, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.305-306 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.013.

165.Dossett, D. Performance of the LHCb VELO/ D.Dossett // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.310-311 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.10.113.

166.Dossett, D. Radiation Damage in the LHCb VELO/ D.Dossett // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.312-313 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.10.111.

167.Fabbri, L. Beam Test Results for the SuperB-SVT Thin Striplet Detector/ L.Fabbri, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.314-317 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.10.086.

168.Favareto, A. Status of the ATLAS Pixel Detector at the LHC and Its Performance After Three Years of Operation/ A.Favareto // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.318-319 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.08.037.

169.Ferrere, D. The Upgrade of the ATLAS Inner Detector/ D.Ferrere // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.30-38 .- Bibliogr.:20.
http://dx.doi.org/10.1016/j.nima.2012.08.096.

170.Ferri, A. First Results on NUV-SiPMs at FBK/ A.Ferri, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.371-372 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.10.021.

171.Fiorini, M. High Rate Particle Tracking and Ultra-Fast Timing with a Thin Hybrid Silicon Pixel Detector/ M.Fiorini, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.270-273 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.10.108.

172.Fischer, P. Interpolating Silicon Photomultipliers/ P.Fischer, C.Piemonte // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.320-322 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.120.

173.Gallrapp, C. Planar Pixel Sensors for the ATLAS Tracker Upgrade at HL-LHC/ C.Gallrapp // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.323-324 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2012.10.034.

174.Gervino, G. Characterization of CVD-Diamonds for Radiation Detection/ G.Gervino, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.325-326 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.016.

175.Herrmann, S. CSPAD-140k: A Versatile Detector for LCLS Experiments/ S.Herrmann, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.550-553 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2013.01.057.

176.Jendrysik, C. Characterization of the First Prototypes of Silicon Photomultipliers with Bulk-Integrated Quench Resistor Fabricated at MPI Semiconductor Laboratory/ C.Jendrysik, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.262-265 .- Bibliogr.:18.
http://dx.doi.org/10.1016/j.nima.2012.10.093.

177.Kodys, P. The DEPFET Active Pixels for Belle II - Resolution in 50 *mm Thinned Sensor/ P.Kodys // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.327-328 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.014.

178.La Rosa, A. Novel Silicon n-in-p Pixel Sensors for the Future ATLAS Upgrades/ A.La Rosa, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.329-330 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.10.091.

179.Leviner, L.E. A Segmented, Enriched N-Type Germanium Detector for Neutrinoless Double Beta-Decay Experiments/ L.E.Leviner, V.B.Brudanin, V.G.Egorov, V.G.Sandukovsky, [a.o.] // Nuclear Instruments & Methods in Physics Research A.-2014.-Vol.735.-p.66-77 .- Bibliogr.:40.
http://dx.doi.org/10.1016/j.nima.2013.08.081.

180.Li, Z. Recent Results of CERN RD39 Collaboration on Development of Radiation Hard Si Detectors Operated at Low to Cryogenic Temperatures/ Z.Li, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.266-269 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.11.012.

181.Mattiazzo, S. LePIX: First Results from a Novel Monolithic Pixel Sensor/ S.Mattiazzo, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.288-291 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.10.098.

182.Meloni, F. Track and Vertex Reconstruction in the ATLAS Experiment/ F.Meloni // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.334-335 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.09.038.

183.Merkel, P. CMS Tracker Performance/ P.Merkel // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.339-341 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.10.008.

184.Obertino, M. 3D-FBK Pixel Sensors with CMS Readout: First Test Results/ M.Obertino, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.342-344 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.076.

185.Piemonte, C. Performance of FBK SiPMs Coupled to PETA3 Read-Out ASIC for PET Application/ C.Piemonte, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.345-346 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.012.

186.Potenza, A. Radiation Tolerance of a Moderate Resistivity Substrate in a Modern CMOS Process/ A.Potenza, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.347-349 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.020.

187.Povoli, M. Functional Characterization of Planar Sensors with Active Edges Using Laser and X-Ray Beam Scans/ M.Povoli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.350-352 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.09.035.

188.Rachevski, A. X-Ray Spectroscopic Performance of a Matrix of Silicon Drift Diodes/ A.Rachevski, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.353-355 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.10.017.

189.Rapin, D. The AMS-02 Silicon Tracker: First Year on ISS in Space/ D.Rapin // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.524-526 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.067.

190.Rashevskaya, I. Characterization of Strip Detector Parameters for the SuperB Silicon Vertex Tracker/ I.Rashevskaya, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.356-357 .- Bibliogr.:1.
http://dx.doi.org/10.1016/j.nima.2012.10.019.

191.Riboldi, S. Status Report of the GERDA Experiment Phase I/ S.Riboldi // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.527-529 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.11.101.

192.Rizzo, G. Recent Developments on CMOS MAPS for the SuperB Silicon Vertex Tracker/ G.Rizzo, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.283-287 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.10.084.

193.Rosendahl, P.L. ATLAS Silicon Microstrip Tracker Operation and Performance/ P.L.Rosendahl // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.358-360 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.10.030.

194.Ruzin, A. Simulation of Compensated and Overcompensated Cd&sub(1-x)Zn&sub(x)Te/ A.Ruzin // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.361-362 .- Bibliogr.:12.
http://dx.doi.org/10.1016/j.nima.2012.10.101.

195.Selbach, K.E. Neural Network Based Cluster Reconstruction in the ATLAS Pixel Detector/ K.E.Selbach // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.363-365 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.10.033.

196.Sorokin, I. The Silicon Tracking System of the CBM Experiment at FAIR: Overview and Development Progress/ I.Sorokin // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.366-368 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.10.118.

197.Stahlman, J.M. Advanced Alignment of the ATLAS Inner Detector/ J.M.Stahlman // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.369-370 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.09.036.

198.Trucchi, D.M. Resistant and Sensitive Single-Crystal Diamond Dosimeters for Ionizing Radiation/ D.M.Trucchi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.373-375 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.10.095.

199.Uplegger, L. Test-Beam Studies of Diamond Sensors for SLHC/ L.Uplegger, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.376-379 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.10.013.

200.Zucca, S. A Quadruple Well CMOS MAPS Prototype for the Layer0 of the SuperB SVT/ S.Zucca, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.380-382 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.12.106.

 

С 344.1с1 ЛИВНЕВЫЕ СПЕКТРОМЕТРЫ ПОЛНОГО ПОГЛОЩЕНИЯ. АДРОННЫЕ КАЛОРИМЕТРЫ

 

201.Anelli, M. The Zero Degree Detector at BESIII/ M.Anelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.118-120 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.050.

202.Anfimov, N. Shashlyk EM Calorimeter Prototype Readout by MAPD with Superhigh Pixel Density for COMPASS II/ N.Anfimov, V.Anosov, I.Chirikov-Zorin, D.Fedoseev, O.Gavrishchuk, N.Khovanskiy, Z.Krumshtein, G.Meshcheryakov, A.Nagaytsev, A.Olchevski, T.Rezinko, A.Selyunin, A.Rybnikov, Z.Sadygov, I.Savin, V.Tchalyshev, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.75-77 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.104.

203.Balla, A. QCALT: A Tile Calorimeter for KLOE-2 Upgrade/ A.Balla, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.95-96 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.072.

204.Bella, L.A. Status of the ATLAS Liquid Argon Calorimeter and Its Performance After two Years of LHC Operation/ L.A.Bella // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.60-62 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.077.

205.Berra, A. SiPM Based Readout System for Crystals/ A.Berra, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.63-65 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.075.

206.Boumediene, D. Calibration and Monitoring Systems of the ATLAS Tile Hadron Calorimeter/ D.Boumediene // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.66-68 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.11.070.

207.Budagov, J. The Calorimeter Project for the Mu2e Experiment/ J.Budagov, Yu.Davydov, V.Glagolev, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.56-59 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.177.

208.Carrio, F. Upgrade for the ATLAS Tile Calorimeter Readout Electronics at the High Luminosity LHC/ F.Carrio // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.69-71 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.068.

209.Cascella, M. Detection of Electron Showers in Dual-Readout Crystal Calorimeters/ M.Cascella, S.Franchino // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.72-74 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.105.

210.Chirikov-Zorin, I. The Design of a Module of a New Electromagnetic Calorimeter for COMPASS II/ I.Chirikov-Zorin, Z.Krumshtein, A.Olchevski, V.Utkin, P.Zhmurin // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.412-417 .- Bibliogr.:9.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/05_chir.pdf.

211.Consonni, S.M. Tracking and Calorimeter Performance for Tau Reconstruction at ATLAS/ S.M.Consonni // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.78-80 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.086.

212.Cordelli, M. CCALT: A Crystal CALorimeter with Timing for the KLOE-2 Upgrade/ M.Cordelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.81-82 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.074.

213.Eigen, G. A LYSO Calorimeter for the SuperB Factory/ G.Eigen, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.107-109 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.11.100.

214.Gomez, H. BiPo: A Dedicated Radiopurity Detector for the SuperNEMO Experiment/ H.Gomez // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.52-55 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.12.063.

215.Hernandez, Y. The ATLAS Tile Calorimeter Performance at LHC/ Y.Hernandez // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.83-85 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.069.

216.Kogan, L. Determining the Jet Energy Scale Uncertainty in the ATLAS Detector/ L.Kogan // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.86-87 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.048.

217.Lucaci-Timoce, A. Shower Development of Particles with Momenta Below 10 GeV in a Highly Granular Scintillator-Tungsten Hadron Calorimeter/ A.Lucaci-Timoce // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.88-90 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.046.

218.Mannai, S. High Granularity Semi-Digital Hadronic Calorimeter Using GRPCs/ S.Mannai, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.91-94 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.066.

219.Meoni, E. Performances of the Signal Reconstruction in the ATLAS Hadronic Tile Calorimeter/ E.Meoni // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.97-98 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2013.01.021.

220.Obertino, M.M. Calibration of the CMS Electromagnetic Calorimeter with LHC Collision Data/ M.M.Obertino // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.99-101 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.032.

221.Onorato, G. The Mu2e Experiment at Fermilab: *m*-N *> e*-N/ G.Onorato // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.102-103 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.11.073.

222.Raicevic, N. Shower Library Technique for Fast Simulation of Showers in Calorimeters of the H1 Experiment/ N.Raicevic, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.104-106 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.040.

223.Seifert, F. Upgrade Plans for the ATLAS Calorimeters/ F.Seifert // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.16-20 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.08.078.

224.Signorelli, G. The FOXFIRE Liquid Xenon Detector Research and Development Project/ G.Signorelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.110-111 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.07.063.

225.Sousa, M.J. Single Hadron Response Measurements in ATLAS and Evaluation of the Uncertainty on the Jet Energy Measurement/ M.J.Sousa // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.112-114 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.085.

226.Starz, S. Upgraded Readout Electronics for the ATLAS LAr Calorimeter at the Phase I of LHC/ S.Starz // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.115-117 .- Bibliogr.:1.
http://dx.doi.org/10.1016/j.nima.2012.11.051.

227.Wigmans, R. New Results from the RD52 (DREAM) Project/ R.Wigmans // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.43-47 .- Bibliogr.:11.
http://dx.doi.org/10.1016/j.nima.2012.11.056.

 

С 344.3 ЯДЕРНАЯ ЭЛЕКТРОНИКА

 

228.Aleksandrov, A. A Novel Approach for Fast Scanning of Nuclear Emulsions with Continuous Motion of the Microscope Stage/ A.Aleksandrov, V.Tioukov // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.184-185 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.121.

229.Anderson, J. A Fast Hardware Tracker for the ATLAS Trigger System/ J.Anderson, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.258-259 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.133.

230.Avanzini, C. A New Control and Data Acquisition System for Cosmic Ray Telescopes Based on Multigap Resistive Plate Chambers/ C.Avanzini, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.231-233 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2013.01.022.

231.Badoni, D. A CMOS Front-End for MPPC-Based Detectors Aimed to TOF Applications with Fast Discriminator, Adjustable Arming Threshold and Constant-Fraction Functionality/ D.Badoni, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.189-191 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.08.098.

232.Beigbeder, C. Front-End Electronics for the SuperB Charged Particle Identification Detectors/ C.Beigbeder, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.186-188 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.033.

233.Bogdan, M. 64-Channel, 5 GSPS ADC Module with Switched Capacitor Arrays/ M.Bogdan, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.192-193 .- Bibliogr.:1.
http://dx.doi.org/10.1016/j.nima.2012.08.087.

234.Bombelli, L. Analog Front-End Electronics for the Outer Layers of the SuperB SVT: Design and Expected Performances/ L.Bombelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.194-196 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.11.139.

235.Brofferio, C. Electrical Characterization of the Low Background Cu-PEN Links of the CUORE Experiment/ C.Brofferio, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.211-212 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.08.047.

236.Bucciantonio, M. Fast Readout of GEM Detectors for Medical Imaging/ M.Bucciantonio, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.160-163 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2012.10.046.

237.Cappelli, L. A Fast Readout Algorithm for Cluster Counting/Timing Drift Chambers on a FPGA Board/ L.Cappelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.226-228 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.10.087.

238.Dorosz, P. Silicon Photomultiplier's Gain Stabilization by Bias Correction for Compensation of the Temperature Fluctuations/ P.Dorosz, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.202-204 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.116.

239.Gaioni, L. The Design of Fast Analog Channels for the Readout of Strip Detectors in the Inner Layers of the SuperB SVT/ L.Gaioni, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.205-207 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.125.

240.Giachero, A. Characterization of High Impedance Connecting Links for Bolometric Detectors/ A.Giachero, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.229-230 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.140.

241.Giordano, F. A Front-End Electronics Board for Single Photo-Electron Timing and Charge from MaPMT/ F.Giordano, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.208-210 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2013.01.024.

242.Giorgi, F. The Front-End Chip of the SuperB SVT Detector/ F.Giorgi, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.180-183 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.036.

243.Iafolla, L. FPGA-Based Time to Digital Converter and Data Acquisition System for High Energy Tagger of KLOE-2 Experiment/ L.Iafolla, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.213-214 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.10.010.

244.Jamil, M. Simulation Response of B&sub(4)C-Coated PPAC for Thermal Neutrons Using GEANT4 Monte Carlo Approach/ M.Jamil, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.240-242 .- Bibliogr.9.
http://dx.doi.org/10.1016/j.nima.2012.11.138.

245.Kavatsyuk, M. Trigger-Less Readout System with Pulse Pile-Up Recovery for the PANDA Electromagnetic Calorimeter/ M.Kavatsyuk, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.217-219 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.10.007.

246.Kilic, A. Influence of Neutrons on Signal Fluctuations for APD Structures/ A.Kilic, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.215-216 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.11.110.

247.Kishishita, T. Prototype of a Gigabit Data Transmitter in 65 nm CMOS for DEPFET Pixel Detectors at Belle-II/ T.Kishishita, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.168-172 .- Bibliogr.:10.
http://dx.doi.org/10.1016/j.nima.2012.11.013.

248.Krivda, M. The NA62 Trigger System/ M.Krivda // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.164-167 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.11.178.

249.Mazza, G. The Pixel Detector Readout ASIC for the MicroVertex Detector of the PANDA Experiment/ G.Mazza, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.197-199 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.078.

250.Messi, F. Front-End Electronics for the Tagger of the BGO-OD Experiment/ F.Messi // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.220-222 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.11.120.

251.Minutoli, S. The Electronics System of the TOTEM T1 Telescope/ S.Minutoli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.223-225 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.10.124.

252.Quartieri, E. High Accuracy Injection Circuit for the Calibration of a Large Pixel Sensor Matrix/ E.Quartieri, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.234-236 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2012.11.124.

253.Rhee, J.T. First GEANT4-Based Simulation Investigation of a Li-Coated Resistive Plate Chamber for Low-Energy Neutrons/ J.T.Rhee, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.237-239 .- Bibliogr.:11.
http://dx.doi.org/10.1016/j.nima.2012.11.091.

254.Schwegler, P. Improvement of the L1 Trigger for the ATLAS Muon Spectrometer at High Luminosity/ P.Schwegler, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.245-247 .- Bibliogr.:3.
http://dx.doi.org/10.1016/j.nima.2013.01.023.

255.Scotti, V. The JEM-EUSO Time Synchronization System/ V.Scotti, G.Osteria // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.248-250 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.10.121.

256.Seguin-Moreau, N. Latest Generation of ASICs for Photodetector Readout/ N.Seguin-Moreau // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.173-179 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.134.

257.Sidoti, A. The ATLAS Trigger System: Performance and Evolution/ A.Sidoti // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.251-252 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.028.

258.Tamsett, M. Performance and Improvements of the ATLAS Jet Trigger System/ M.Tamsett // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.253-254 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.10.050.

259.Tanasijczuk, A.J. The ATLAS Hadronic Tau Trigger/ A.J.Tanasijczuk // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.255-257 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.08.062.

260.Zibell, A. Development of a ReadOutDriver (ROD) for ATLAS Micromegas/ A.Zibell // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.260-261 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.126.

 

С 344.4а МЕТОДЫ ПРИГОТОВЛЕНИЯ МИШЕНЕЙ.

 

261.Papa, A. Development of an Active Target for *m *> e*g Search/ A.Papa, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.580-581 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.111.

 

С 345 УСКОРИТЕЛИ ЗАРЯЖЕННЫХ ЧАСТИЦ

 

262.Antipov, S. Subpicosecond Bunch Train Production for a Tunable mJ Level THz Source/ S.Antipov, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.134802 .- Bibliogr.:24.
http://dx.doi.org/10.1103/PhysRevLett.111.134802.

263.Sbarra, C. The Data Acquisition System of the SuperB-SVT Beam Test/ C.Sbarra, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.243-244 .- Bibliogr.:8.
http://dx.doi.org/10.1016/j.nima.2012.11.117.

264.Welsch, C.P. Ultra-Low Energy Storage Ring at FLAIR/ C.P.Welsch, A.I.Papash, O.Karamyshev, A.Smirnov, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.205-216 .- Bibliogr.:27.
http://dx.doi.org/10.1007/s10751-011-0460-z.

 

С 345 л НОВЫЕ МЕТОДЫ УСКОРЕНИЯ.

 

265.Breuer, J. Laser-Based Acceleration of Nonrelativistic Electrons at a Dielectric Structure/ J.Breuer, P.Hommelhoff // Physical Review Letters.-2013.-Vol.111, No.13.-p.134803 .- Bibliogr.:31.
http://dx.doi.org/10.1103/PhysRevLett.111.134803.

266.Thaury, C. Angular-Momentum Evolution in Laser-Plasma Accelerators/ C.Thaury, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.135002 .- Bibliogr.:28.
http://dx.doi.org/10.1103/PhysRevLett.111.135002.

 

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

 

267.Cardarelli, R. Geant4-Based Simulation of a Beam Radiation Monitor for SUPERB/ R.Cardarelli, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.200-201 .- Bibliogr.:4.
http://dx.doi.org/10.1016/j.nima.2012.11.132.

 

С 346 ЭЛЕМЕНТАРНЫЕ ЧАСТИЦЫ

 

268.Baechler, J. Status of the TOTEM Experiment at LHC/ J.Baechler, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.21-25 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nima.2012.08.084.

269.Cullen, G. Next-to-Leading-Order QCD Corrections to Higgs Boson Production Plus Three jets in Gluon Fusion/ G.Cullen, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.131801 .- Bibliogr.:51.
http://dx.doi.org/10.1103/PhysRevLett.111.131801.

270.Schepers, G. P^-ANDA at FAIR. Physics and Detector/ G.Schepers // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.1-12 .- Bibliogr.:25.
http://dx.doi.org/10.1007/s10751-011-0380-y.

 

С 346.1 НЕЙТРИНО

 

271.Corradini, M. In-Flight Antiproton Annihilation on Nuclei at Low Energies/ M.Corradini, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.31-40 .- Bibliogr.:18.
http://dx.doi.org/10.1007/s10751-011-0476-4.

272.Jentschura, U.D. Weighing the Neutrino/ U.D.Jentschura, [et al.] // International Journal of Modern Physics E.-2014.-Vol.23, No.1.-p.1450004 .- Bibliogr.:63.
http://dx.doi.org/10.1142/S0218301314500049.

273.Ohnishi, H. A Search for *f Meson Nucleus Bound State Using Antiproton Annihilation on Nucleus/ H.Ohnishi, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.23-30 .- Bibliogr.:10.
http://dx.doi.org/10.1007/s10751-012-0647-y.

274.Sakuma, F. Double Antikaonic Nuclear Clusters in Antiproton-*3He Annihilation at J-PARC/ F.Sakuma, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.51-62 .- Bibliogr.:21.
http://dx.doi.org/10.1007/s10751-011-0393-6.

 

С 346.2б АНТИНУКЛОНЫ. ИХ ОБРАЗОВАНИЕ И ПРОЦЕССЫ ВЗАИМОДЕЙСТВИЯ С НУКЛОНАМИ

 

275.Froelich, P. Interaction of Antihydrogen with Ordinary Atoms and Solid Surfaces/ P.Froelich, A.Voronin // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.115-128 .- Bibliogr.:41.
http://dx.doi.org/10.1007/s10751-012-0627-2.

276.Grzonka, D. An Alternative for Polarized Antiproton Beams/ D.Grzonka, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.183-190 .- Bibliogr.:27.
http://dx.doi.org/10.1007/s10751-011-0395-4.

277.Kaplan, D.M. Prospects for Antiproton Experiments at Fermilab/ D.M.Kaplan // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.217-226 .- Bibliogr.:47.
http://dx.doi.org/10.1007/s10751-011-0386-6.

278.Lenisa, P. Perspectives for Polarized Antiprotons/ P.Lenisa // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.175-182 .- Bibliogr.:13.
http://dx.doi.org/10.1007/s10751-011-0398-1.

279.Oelert, W. AD Performance and its Extension Towards ELENA/ W.Oelert, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.227-236 .- Bibliogr.:8.
http://dx.doi.org/10.1007/s10751-012-0589-4.

280.Oelert, W. Prospects for Antiproton Physics, my Perspective/ W.Oelert // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.237-242 .-
http://dx.doi.org/10.1007/s10751-012-0587-6.

281.Panniello, M. Beam Instrumentation for the Ultra-Low Energy Storage Ring (USR)/ M.Panniello, A.Papash, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.191-198 .- Bibliogr.:11.
http://dx.doi.org/10.1007/s10751-012-0596-5.

282.Sellner, S. The Antiproton Cell Experiment - Do Antiprotons offer Advantages Over Other Particle Beam Modalities?/ S.Sellner, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.159-174 .- Bibliogr.:25.
http://dx.doi.org/10.1007/s10751-012-0638-z.

283.Tasson, J.D. Antimatter, the SME, and Gravity/ J.D.Tasson // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.137-146 .- Bibliogr.:56.
http://dx.doi.org/10.1007/s10751-012-0642-3.

284.Todoroki, K. Beam Profile Monitor for Annihilation Cross Section Measurements of Antiprotons at 100 keV/ K.Todoroki, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.199-204 .- Bibliogr.:15.
http://dx.doi.org/10.1007/s10751-011-0464-8.

285.Voronin, A.Yu. Gravitational States of Antihydrogen near Material Surface/ A.Yu.Voronin, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.129-136 .- Bibliogr.:24.
http://dx.doi.org/10.1007/s10751-011-0391-8.

 

С 346.5 К-МЕЗОНЫ И ГИПЕРОНЫ

 

286.Hyodo, T. Structure of Near-Threshold s-Wave Resonances/ T.Hyodo // Physical Review Letters.-2013.-Vol.111, No.13.-p.132002 .- Bibliogr.:18.
http://dx.doi.org/10.1103/PhysRevLett.111.132002.

287.Larionov, A.B. Strangeness Production in Antiproton-Nucleus Collisions/ A.B.Larionov, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.81-88 .- Bibliogr.:13.
http://dx.doi.org/10.1007/s10751-011-0387-4.

288.Lekala , M.L. The Double-*L Hypernucleus *1*1&sub(*L*L)Be/ M.L.Lekala , V.B.Belyaev, [et al.] // Ядерная физика.-2014.-Т.77, No.4.-p.500-506 .- Bibliogr.:11.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040048.pdf.

289.Lorente, A.S. Double *L-Hypernuclei at the PANDA Experiment/ A.S.Lorente // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.41-50 .- Bibliogr.:28.
http://dx.doi.org/10.1007/s10751-011-0394-5.

290.Ortega, P.G. Strangeness Production in pp^- Collision/ P.G.Ortega, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.71-80 .- Bibliogr.:21.
http://dx.doi.org/10.1007/s10751-011-0400-y.

291.Shevchenko, N.V. Scattering and Bound States in the K*-d System/ N.V.Shevchenko // Ядерная физика.-2014.-Т.77, No.4.-p.525-532 .- Bibliogr.:23.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040140.pdf.

 

С 346.6 РЕЗОНАНСЫ И НОВЫЕ ЧАСТИЦЫ

 

292.Caselle, M. Finite-Temperature Behavior of Glueballs in Lattice Gauge Theories/ M.Caselle, R.Pellegrini // Physical Review Letters.-2013.-Vol.111, No.13.-p.132001 .- Bibliogr.:18.
http://dx.doi.org/10.1103/PhysRevLett.111.132001.

293.Kopf, B. Exotics at PANDA/ B.Kopf // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.13-22 .- Bibliogr.:16.
http://dx.doi.org/10.1007/s10751-011-0392-7.

294.Mohammadi, B. Effects of Final-State Interactions in B*+*>D*+&sub(s)K^-*0 Decay/ B.Mohammadi, H.Mehraban // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.348-362 .- Bibliogr.:20.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/01_1_moh.pdf.

295.Revai, J. Can the *L(1405) Resonance Be Seen in Neutron Spectra from the K*- + d Reaction?/ J.Revai // Ядерная физика.-2014.-Т.77, No.4.-p.538-546 .- Bibliogr.:15.
http://link.springer.com/content/pdf/10.1134%2FS1063778814040115.pdf.

296.Siebenson, J. Strange Baryon Resonances in pp Collisions Measured with HADES/ J.Siebenson, G.Agakishiev, A.Belyaev, S.Chernenko, O.Fateev, A.Ierusalimov, A.Kurilkin, P.Kurilkin, V.Ladygin, T.Vasiliev, Y.Zanevsky, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.63-70 .- Bibliogr.:10.
http://dx.doi.org/10.1007/s10751-011-0388-3.

297.Wang, Q. Decoding the Riddle of Y(4260) and Z&sub(c)(3900)/ Q.Wang, [et al.] // Physical Review Letters.-2013.-Vol.111, No.13.-p.132003 .- Bibliogr.:25.
http://dx.doi.org/10.1103/PhysRevLett.111.132003.

 

С 346.6е НОВЫЕ ЧАСТИЦЫ

 

298.Ellis, J. Casting Light on Dark Matter/ J.Ellis // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.89-104 .- Bibliogr.:39.
http://dx.doi.org/10.1007/s10751-012-0574-y.

299.Sulc, M. Axion Search by Laser-Based Experiment OSQAR/ M.Sulc, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.530-532 .- Bibliogr.:7.
http://dx.doi.org/10.1016/j.nima.2012.11.107.

 

С 347 КОСМИЧЕСКИЕ ЛУЧИ

 

300.Berat, C. Radio Detection of Extensive Air Showers at the Pierre Auger Observatory/ C.Berat // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.471-474 .- Bibliogr.:15.
http://dx.doi.org/10.1016/j.nima.2012.11.102.

301.Boezio, M. The PAMELA Space Mission for Antimatter and Dark Matter Searches in Space/ M.Boezio, [et al.] // Hyperfine Interactions.-2012.-Vol.213, No.1/3.-p.147-158 .- Bibliogr.:56.
http://dx.doi.org/10.1007/s10751-011-0397-2.

302.Kleifges, M. Measurement of Cosmic Ray Air Showers Using MHz Radio-Detection Techniques at the Pierre Auger Observatory/ M.Kleifges // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.499-501 .- Bibliogr.:11.
http://dx.doi.org/10.1016/j.nima.2012.11.052.

 

С 348 ЯДЕРНЫЕ РЕАКТОРЫ. РЕАКТОРОСТРОЕНИЕ

 

303.Budagov, J. Air Temperature Stabilization in the Thermally Isolated Optical Laboratory/ J.Budagov, V.Glagolev, M.Lyablin, G.Shirkov, H.M.Durand // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-p.469-475 .- Bibliogr.:7.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/11_bud_2.pdf.

 

С 349.1 ДЕЙСТВИЕ ИЗЛУЧЕНИЙ НА МАТЕРИАЛЫ.

 

304.Уваров, В.Т. Радиационно-акустический контроль теплофизических параметров конструкционных материалов, облученных сильноточными релятивистскими электронными пучками/ В.Т.Уваров, А.Н.Никитин, В.Н.Робук, Т.И.Иванкина, [др.] // Физика элементарных частиц и атомного ядра. Письма.-2014.-Т.11, No.3.-с.439-450 .- Библиогр.:11.
http://www1.jinr.ru/Pepan_letters/panl_2014_3/08_uvar.pdf.

 

С 350 ПРИЛОЖЕНИЯ МЕТОДОВ ЯДЕРНОЙ ФИЗИКИ В СМЕЖНЫХ ОБЛАСТЯХ

 

305.Anastasio, A. The MU-RAY Experiment. An Application of SiPM Technology to the Understanding of Volcanic Phenomena/ A.Anastasio, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.134-137 .- Bibliogr.:2.
http://dx.doi.org/10.1016/j.nima.2012.08.065.

306.Banerjee, A. Development of Multi-Gap Resistive Plate Chamber (MRPC) for Medical Imaging/ A.Banerjee, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.138-139 .- Bibliogr.:6.
http://dx.doi.org/10.1016/j.nima.2012.08.064.

307.Bolle, E. The AX-PET Experiment: A Demonstrator for an Axial Positron Emission Tomograph/ E.Bolle, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.126-129 .- Bibliogr.:13.
http://dx.doi.org/10.1016/j.nima.2012.07.054.

308.Cabello, J. High Resolution Detectors Based on Continuous Crystals and SiPMs for Small Animal PET/ J.Cabello, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.148-150 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.08.094.

309.Colombetti, P. Low *g Activity Measurement of Meteorites Using HPGe-NaI Detector System/ P.Colombetti, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.140-142 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.07.053.

310.Lavagno, A. Improvements in Real Time *2*2*2Rn Monitoring at Stromboli Volcano/ A.Lavagno, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.145-147 .- Bibliogr.:5.
http://dx.doi.org/10.1016/j.nima.2012.11.031.

311.Llosa, G. First Compton Telescope Prototype Based on Continuous LaBr&sub(3)-SiPM Detectors/ G.Llosa, [et al.] // Nuclear Instruments & Methods in Physics Research A.-2013.-Vol.718.-p.130-133 .- Bibliogr.:9.
http://dx.doi.org/10.1016/j.nima.2012.08.074.

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