ИНФОРМАЦИОННЫЙ БЮЛЛЕТЕНЬ «СТАТЬИ»  27          04.07.2016  

 

С 321 - Классическая механика

1. Beaume, C. Modulated Patterns in a Reduced Model of a Transitional Shear Flow / C.Beaume, [et al.] // Physica Scripta. – 2016. – Vol.91, No.2. – p.024003. - Bibliogr.:29.

http://dx.doi.org/10.1088/0031-8949/91/2/024003

С 322 - Теория относительности

2. Dogru, M.U. Global Monopoles in f(R) Gravity / M.U.Dogru, D.Taser // Modern Physics Letters A. – 2015. – Vol.30, No.40. – p.1550217. - Bibliogr.:47.

http://dx.doi.org/10.1142/S021773231550217X

3. Fraternale, F. Turbulence in the Solar Wind: Spectra from Voyager 2 Data at 5 AU / F.Fraternale, [et al.] // Physica Scripta. – 2016. – Vol.91, No.2. – p.023011. - Bibliogr.:25.

http://dx.doi.org/10.1088/0031-8949/91/2/023011

4. Ho, C.M. Astrophysical Constraints on Dark Energy / C.M.Ho, S.D.H.Hsu // Astroparticle Physics. – 2016. – Vol.74. – p.47-50. - Bibliogr.:20.

http://dx.doi.org/10.1016/j.astropartphys.2015.09.006

5. Kauffman, L.H. Chern–Simons Theory, Vassiliev Invariants, Loop Quantum Gravity and Functional Integration Without Integration / L.H.Kauffman // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1530067. - Bibliogr.:29.

http://dx.doi.org/10.1142/S0217751X15300677

6. Lopez, G.V. Force Approach to Radiation Reaction / G.V.Lopez // Annals of Physics. – 2016. – Vol.365. – p.1-6. - Bibliogr.:17.

http://dx.doi.org/10.1016/j.aop.2015.11.012

7. Oliveira, A.B. On the Effects on a Landau-Type System for an Atom with no Permanent Electric Dipole Moment Due to a Coulomb-Type Potential / A.B.Oliveira, K.Bakke // Annals of Physics. – 2016. – Vol.365. – p.66-72. - Bibliogr.:78.

http://dx.doi.org/10.1016/j.aop.2015.12.001

8. Pitts, J.B. Universally Coupled Massive Gravity, III: dRGT–Maheshwari Pure Spin-2, Ogievetsky–Polubarinov and Arbitrary Mass Terms / J.B.Pitts // Annals of Physics. – 2016. – Vol.365. – p.73-90. - Bibliogr.:74.

http://dx.doi.org/10.1016/j.aop.2015.12.002

9. Sakalli, I. Absorption Cross-Section and Decay Rate of Rotating Linear Dilaton Black Holes / I.Sakalli, O.A.Aslan // Astroparticle Physics. – 2016. – Vol.74. – p.73-78. - Bibliogr.:51.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.005

10. Santos, A.F. Godel-Type Solution in f(R, T) Modified Gravity / A.F.Santos, C.J.Ferst // Modern Physics Letters A. – 2015. – Vol.30, No.40. – p.1550214. - Bibliogr.:36.

http://dx.doi.org/10.1142/S0217732315502144

11. Stubbs, C.W. Precise Astronomical Flux Calibration and Its Impact on Studying the Nature of the Dark Energy / C.W.Stubbs, Y.J.Brown // Modern Physics Letters A. – 2015. – Vol.30, No.40. – p.1530030. - Bibliogr.:46.

http://dx.doi.org/10.1142/S021773231530030X

12. Weng, Z.-H. Some Properties of Dark Matter Field in the Complex Octonion Space / Z.-H.Weng // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1550212. - Bibliogr.:56.

http://dx.doi.org/10.1142/S0217751X15502127

С 323 - Квантовая механика

13. Lewis, Z. Position and Momentum Uncertainties of a Particle in a V-Shaped Potential Under the Minimal Length Uncertainty Relation / Z.Lewis, [et al.] // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1550206. - Bibliogr.:123.

http://dx.doi.org/10.1142/S0217751X15502061

14. Ohkuwa, Y. Constraints on Operator Ordering from Third Quantization / Y.Ohkuwa, [et al.] // Annals of Physics. – 2016. – Vol.365. – p.54-65. - Bibliogr.:67.

http://dx.doi.org/10.1016/j.aop.2015.11.009

С 324.1а - Квантовая электродинамика. Эксперименты по проверке КЭД при высоких и низких энергиях

15. Fermi, D. Local Zeta Regularization and the Scalar Casimir Effect III. The Case with a Background Harmonic Potential / D.Fermi, L.Pizzocchero // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1550213. - Bibliogr.:27.

http://dx.doi.org/10.1142/S0217751X15502139

С 324.1б - Сильные взаимодействия. Электромагнитная структура частиц. Алгебра токов. Киральные теории. Теория Редже

16. Dudal, D. Confinement and Dynamical Chiral Symmetry Breaking in a Non-Perturbative Renormalizable Quark Model / D.Dudal, [et al.] // Annals of Physics. – 2016. – Vol.365. – p.155-179. - Bibliogr.:85.

http://dx.doi.org/10.1016/j.aop.2015.12.003

С 324.1г - Калибровочные теории поля. Классические и квантовые поля Янга-Миллса. Спонтанно- нарушенные симметрии. Модели Великого объединения

17. Lavrov, P.M. Once Again on the Gribov Horizon / P.M.Lavrov, O.V.Radchenko // Modern Physics Letters A. – 2015. – Vol.30, No.40. – p.1550215. - Bibliogr.:22.

http://dx.doi.org/10.1142/S0217732315502156

С 324.1д - Квантовая хромодинамика

18. Stack, P.D. The Relativity of Color / P.D.Stack, R.Delbourgo // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1550211. - Bibliogr.:13.

http://dx.doi.org/10.1142/S0217751X15502115

С 324.1е - Суперсимметричные теории. Супергравитация. Суперструны

19. Dutta, B. My Days with Richard Arnowitt / B.Dutta // Physica Scripta. – 2016. – Vol.91, No.1. – p.013002. - Bibliogr.:62.

http://dx.doi.org/10.1088/0031-8949/91/1/013002

С 324.2 - Нелокальные и нелинейные теории поля. Теории с высшими производными. Теории с индефинитной метрикой. Квантовая теория протяженных объектов. Струны. Мембраны. Мешки

20. Kane, G. How Could (Should) We Make Contact between String/M-Theory and Our Four-Dimensional World, and Associated LHC Predictions? / G.Kane // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1530062. - Bibliogr.:36.

http://dx.doi.org/10.1142/S0217751X15300628

С 325 - Статистическая физика и термодинамика

21. Cotler, J.S. Entanglement Entropy and Variational Methods: Interacting Scalar Fields / J.S.Cotler, M.T.Mueller // Annals of Physics. – 2016. – Vol.365. – p.91-117. - Bibliogr.:31.

http://dx.doi.org/10.1016/j.aop.2015.12.005

22. Starik, A.M. Theoretical Study of Thermochemical Properties of Al&sub(n)C&sub(m) Clusters / A.M.Starik, [et al.] // Physica Scripta. – 2016. – Vol.91, No.1. – p.013004. - Bibliogr.:38.

http://dx.doi.org/10.1088/0031-8949/91/1/013004

С 326 - Квантовая теория систем из многих частиц. Квантовая статистика

23. Vetter, P.A. Single Photon Subradiance and Superradiance Revisited: a Group Theoretic Analysis of Subradiant States / P.A.Vetter, [et al.] // Physica Scripta. – 2016. – Vol.91, No.2. – p.023007. - Bibliogr.:24.

http://dx.doi.org/10.1088/0031-8949/91/2/023007

С 33 а - Нанофизика. Нанотехнология

24. Мазурицкий, М.И. Резонансное возбуждение и пространственное распределение рентгеновской флуоресценции на выходе поликапиллярных структур / М.И.Мазурицкий, А.М.Лерер // Поверхность. – 2016. – №3. – с.3-9. - Библиогр.:27.

http://dx.doi.org/10.1134/S1027451016020130

С 332 - Электромагнитные взаимодействия

25. Feng, C. Generation of Two-Color Ultra-Short Radiation Pulses from Two Electron Bunches and a Chirped Seeded Free-Electron Laser / C.Feng, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.79-85. - Bibliogr.:40.

http://dx.doi.org/10.1016/j.nima.2015.11.001

26. Ganeev, R.A. Application of Organic Compounds for High-Order Harmonic Generation of Ultrashort Pulses / R.A.Ganeev // Оптика и спектроскопия. – 2016. – Т.120, №2. – c.319-323. - Bibliogr.:9.

http://dx.doi.org/10.1134/S0030400X16020107

27. Geloni, G. Brightness of Synchrotron Radiation from Wigglers / G.Geloni, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.13-29. - Bibliogr.:20.

http://dx.doi.org/10.1016/j.nima.2015.10.004

28. Ghanbari-Adivi, E. One-Electron Capture from K Shell of Atomic Targets by Proton Impact / E.Ghanbari-Adivi, H.Ghavaminia // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550093. - Bibliogr.:33.

http://dx.doi.org/10.1142/S0218301315500937

29. Himura, H. BX-U Linear Trap for One-Way Production and Confinement of Li*+ and e*- Plasmas / H.Himura // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.100-107. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nima.2015.12.024

30. Kim, E.-S. Design of a Multi-Bend Achromat Lattice for 3 GeV Synchrotron Light Source / E.-S.Kim // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.49-56. - Bibliogr.:16.

http://dx.doi.org/10.1016/j.nima.2015.12.008

31. Morgenstern, A. Bond Dissociation Energies from the Topology of the Charge Density Using Gradient Bundle Analysis / A.Morgenstern, M.Eberhart // Physica Scripta. – 2016. – Vol.91, No.2. – p.023012. - Bibliogr.:53.

http://dx.doi.org/10.1088/0031-8949/91/2/023012

32. Oganesyan, K.B. FELWI Realization Difficulties / K.B.Oganesyan // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.33-36. - Bibliogr.:16.

http://dx.doi.org/10.1016/j.nima.2015.12.038

33. Park, J. Design of a Hard X-Ray Beamline and End-Station for Pump and Probe Experiments at Pohang Accelerator Laboratory X-Ray Free Electron Laser Facility / J.Park, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.74-79. - Bibliogr.:24.

http://dx.doi.org/10.1016/j.nima.2015.11.147

34. Schlenvoigt, H.-P. Detecting Vacuum Birefringence with x-Ray Free Electron Lasers and High-Power Optical Lasers: a Feasibility Study / H.-P.Schlenvoigt, [et al.] // Physica Scripta. – 2016. – Vol.91, No.2. – p.023010. - Bibliogr.:86.

http://dx.doi.org/10.1088/0031-8949/91/2/023010

35. Torabi, R. Simulation and Initial Experiments of a High Power Pulsed TEA CO&sub(2) Laser / R.Torabi, [et al.] // Physica Scripta. – 2016. – Vol.91, No.1. – p.015501. - Bibliogr.:17.

http://dx.doi.org/10.1088/0031-8949/91/1/015501

36. Wang, Z. Comparative Study of Coherent Multi-Color Radiation Generation in a Seeded Free-Electron Laser / Z.Wang, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.91-95. - Bibliogr.:45.

http://dx.doi.org/10.1016/j.nima.2016.01.072

37. Егоров, В.В. Структурные особенности нуклеопротеиновых частиц вируса гриппа A по данным малоуглового рентгеновского рассеяния / В.В.Егоров, А.И.Куклин, [др.] // Поверхность. – 2016. – №3. – с.62-65. - Библиогр.:14.

http://dx.doi.org/10.1134/S1027451016020063

С 341 а - Различные модели ядер

38. Alzubadi, A.A. Shell Model and Hartree–Fock Calculations for Some Exotic Nuclei / A.A.Alzubadi, [et al.] // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550099. - Bibliogr.:30.

http://dx.doi.org/10.1142/S0218301315500998

39. Devi, V. Two-Term Formula for Ground Band Energy Symmetry in Low-Lying Levels of Light Mg-Zr Nuclei / V.Devi // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550102. - Bibliogr.:32.

http://dx.doi.org/10.1142/S0218301315501025

40. Fellah, M. Particle-Number Conservation in Quasiparticle Representation in the Isovector Neutron–Proton Pairing Case / M.Fellah, [et al.] // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550097. - Bibliogr.:65.

http://dx.doi.org/10.1142/S0218301315500974

41. Hamamoto, I. Interplay between One-Particle and Collective Degrees of Freedom in Nuclei / I.Hamamoto // Physica Scripta. – 2016. – Vol.91, No.2. – p.023004. - Bibliogr.:62.

http://dx.doi.org/10.1088/0031-8949/91/2/023004

42. Nayak, R.C. Identification of Highly Deformed Even–Even Nuclei in the Neutron- and Proton-Rich Regions of the Nuclear Chart from the B(E2)*! and E2 Predictions in the Generalized Differential Equation Model / R.C.Nayak, S.Pattnaik // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550091. - Bibliogr.:39.

http://dx.doi.org/10.1142/S0218301315500913

43. Qi, C. N = Z Nuclei: a Laboratory for Neutron–Proton Collective Mode / C.Qi, R.Wyss // Physica Scripta. – 2016. – Vol.91, No.1. – p.013009. - Bibliogr.:126.

http://dx.doi.org/10.1088/0031-8949/91/1/013009

44. Reinhard, P.-G. Estimating the Relevance of Predictions from the Skyrme–Hartree–Fock Model / P.-G.Reinhard // Physica Scripta. – 2016. – Vol.91, No.2. – p.023002. - Bibliogr.:144.

http://dx.doi.org/10.1088/0031-8949/91/2/023002

45. Satula, W. Isospin Effects in N *~ Z Nuclei in Extended Density Functional Theory / W.Satula, W.Nazarewicz // Physica Scripta. – 2016. – Vol.91, No.2. – p.023013. - Bibliogr.:139.

http://dx.doi.org/10.1088/0031-8949/91/2/023013

46. Van Isacker, P. Symmetries and Deformations in the Spherical Shell Model / P.Van Isacker, S.Pittel // Physica Scripta. – 2016. – Vol.91, No.2. – p.023009. - Bibliogr.:73.

http://dx.doi.org/10.1088/0031-8949/91/2/023009

47. Walker, P.M. High-K Isomerism in Rotational Nuclei / P.M.Walker, F.R.Xu // Physica Scripta. – 2016. – Vol.91, No.1. – p.013010. - Bibliogr.:195.

http://dx.doi.org/10.1088/0031-8949/91/1/013010

С 341 е - Ядерная астрофизика

48. Lim, Y. Hyperon Puzzle of Neutron Stars with Skyrme Force Models / Y.Lim, [et al.] // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550100. - Bibliogr.:29.

http://dx.doi.org/10.1142/S0218301315501001

49. Mohanta, K. Hybrid Compact Star in the Presence of Strong Magnetic Field / K.Mohanta, [et al.] // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550096. - Bibliogr.:49.

http://dx.doi.org/10.1142/S0218301315500962

50. Oulebsir, N. New Determination of *1*2C(*a, *g)*1*6O Reaction Rate / N.Oulebsir // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550098. - Bibliogr.:21.

http://dx.doi.org/10.1142/S0218301315500986

С 341.1 - Радиоактивность

51. Agramunt, J. Characterization of a Neutron–Beta Counting System with Beta-Delayed Neutron Emitters / J.Agramunt, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.69-78. - Bibliogr.:49.

http://dx.doi.org/10.1016/j.nima.2015.10.082

52. Robinson, J.W. Simulations of Electron Avalanches in an Ultra-Low-Background Proportional Counter / J.W.Robinson, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.37-43. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nima.2015.11.123

С 341.1ж - Источники радиоактивных излучений. Источники нейтронов

53. Hrdy, J. Two (and More) Sharp X-Ray Wavelengths in One Beam / J.Hrdy, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.61-63. - Bibliogr.:8.

http://dx.doi.org/10.1016/j.nima.2015.10.094

54. Kato, H. Development of an X-Ray Tube for Irradiation Experiments Using a Field Emission Electron Gun / H.Kato, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.41-46. - Bibliogr.:18.

http://dx.doi.org/10.1016/j.nima.2015.10.080

55. Sutherland, L.-M. Practical in-Situ Determination of Ortho-Para Hydrogen Ratios Via Fiber-Optic Based Raman Spectroscopy / L.-M.Sutherland, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.182-185. - Bibliogr.:11.

http://dx.doi.org/10.1016/j.nima.2015.12.009

С 342 - Прохождение частиц и гамма-квантов через вещество

56. Blau, B. A Prestorage Method to Measure Neutron Transmission of Ultracold Neutron Guides / B.Blau, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.30-40. - Bibliogr.:29.

http://dx.doi.org/10.1016/j.nima.2015.10.075

57. Lovesey, S.W. Neutron Diffraction and the Electronic Properties of BaFe&sub(2)Se&sub(3) / S.W.Lovesey, [et al.] // Physica Scripta. – 2016. – Vol.91, No.1. – p.015803. - Bibliogr.:27.

http://dx.doi.org/10.1088/0031-8949/91/1/015803

58. Nemtsova, N. Electron Energy Loss Spectroscopy Equation for Spectra with Overlapping Oscillations and Its Solution by a Regularization Method / N.Nemtsova, O.Bakieva // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.103-111. - Bibliogr.:17.

http://dx.doi.org/10.1016/j.nimb.2015.12.002

59. Shul'ga, N.F. Structure of the Channeling Electrons Wave Functions under Dynamical Chaos Conditions / N.F.Shul'ga, V.V.Syshchenko, A.I.Tarnovsky, A.Yu.Isupov // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – p.1-9. - Bibliogr.:17.

http://dx.doi.org/10.1016/j.nimb.2015.12.040

С 343 - Ядерные реакции

60. Su, X.-W. Global Optical Model Potential for Alpha Projectile / X.-W.Su, Y.-L.Han // International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550092. - Bibliogr.:73.

http://dx.doi.org/10.1142/S0218301315500925

61. Teshigawara, M. Experimental Verification of Equilibrium Para-Hydrogen Levels in Hydrogen Moderators Irradiated by Spallation Neutrons at J-PARC / M.Teshigawara, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.66-70. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nimb.2015.12.023

62. Usman, A.R. Measurements of Deuteron-Induced Reaction Cross-Sections on Natural Nickel up to 24 MeV / A.R.Usman, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.112-119. - Bibliogr.:47.

http://dx.doi.org/10.1016/j.nimb.2015.10.077

С 344.1 - Методы и аппаратура для регистрации элементарных частиц и фотонов

63. An, M. A Low-Noise CMOS Pixel Direct Charge Sensor, Topmetal-II&sup(-) / M.An, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.144-150. - Bibliogr.:25.

http://dx.doi.org/10.1016/j.nima.2015.11.153

64. Atanov, N. Measurement of Time Resolution of the Mu2e LYSO Calorimeter Prototype / N.Atanov, V.Baranov, Yu.I.Davydov, V.Glagolev, V.Tereshchenko, [a.o.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.104-111. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.nima.2015.12.055

65. Belkadhi, K. Dose Calculation Using a Numerical Method Based on Haar Wavelets Integration / K.Belkadhi, K.Manai // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.73-80. - Bibliogr.:13.

http://dx.doi.org/10.1016/j.nima.2015.12.057

66. Ben-Galim, Y. Using the Doppler Broadened *g Line of the *1*0B(n, *a*g)*7Li Reaction for Thermal Neutron Detection / Y.Ben-Galim, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.140-143. - Bibliogr.:16.

http://dx.doi.org/10.1016/j.nima.2015.11.143

67. Bhattacharyya, R. Determination of the Detection Threshold for Polyethylene Terephthalate (PET) Nuclear Track Detector (NTD) / R.Bhattacharyya, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – p.63-66. - Bibliogr.:20.

http://dx.doi.org/10.1016/j.nimb.2016.01.011

68. Bloser, P.F. Balloon Flight Test of a Compton Telescope Based on Scintillators with Silicon Photomultiplier Readouts / P.F.Bloser, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.92-103. - Bibliogr.:40.

http://dx.doi.org/10.1016/j.nima.2015.12.047

69. Boldyrev, A.S. Tracking Performance of GasPixel Detectors in Test Beam Studies / A.S.Boldyrev, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.47-55. - Bibliogr.:22.

http://dx.doi.org/10.1016/j.nima.2015.10.087

70. Chernikova, D. A Potential Alternative/Complement to the Traditional Thermal Neutron Based Counting in Nuclear Safeguards and Security / D.Chernikova, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.164-171. - Bibliogr.18.

http://dx.doi.org/10.1016/j.nima.2015.11.146

71. Croft, S. Analysis of Calibration Data for the Uranium Active Neutron Coincidence Counting Collar with Attention to Errors in the Measured Neutron Coincidence Rate / S.Croft, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.70-75. - Bibliogr.:22.

http://dx.doi.org/10.1016/j.nima.2015.11.154

72. Demkiv, T.M. Luminescent and Kinetic Properties of the Polystyrene Composites Based on BaF&sub(2) Nanoparticles / T.M.Demkiv, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.1-5. - Bibliogr.:11.

http://dx.doi.org/10.1016/j.nima.2015.11.130

73. Ebert, J. The COBRA Demonstrator at the LNGS Underground Laboratory / J.Ebert, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.114-120. - Bibliogr.:27.

http://dx.doi.org/10.1016/j.nima.2015.10.079

74. Fukasawa, A. Multichannel HPD for High-Speed Single Photon Counting / A.Fukasawa, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.81-85. - Bibliogr.:27.

http://dx.doi.org/10.1016/j.nima.2015.12.051

75. Garcia-Sciveres, M. Data Encoding Efficiency in Pixel Detector Readout with Charge Information / M.Garcia-Sciveres, X.Wang // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.18-22. - Bibliogr.:10.

http://dx.doi.org/10.1016/j.nima.2016.01.014

76. Giaz, A. The CLYC-6 and CLYC-7 Response to *g-Rays, Fast and Thermal Neutrons / A.Giaz, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.132-139. - Bibliogr.:29.

http://dx.doi.org/10.1016/j.nima.2015.11.119

77. Gonzalez, J.G. Mass Composition Sensitivity of Combined Arrays of Water Cherenkov and Scintillation Detectors in the EeV Range / J.G.Gonzalez, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.37-46. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.astropartphys.2015.09.003

78. Hamel, M.C. Stochastic Image Reconstruction for a Dual-Particle Imaging System / M.C.Hamel, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.120-131. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nima.2015.12.002

79. Helgesson, P. Sampling of Systematic Errors to Estimate Likelihood Weights in Nuclear Data Uncertainty Propagation / P.Helgesson, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.137-149. - Bibliogr.:33.

http://dx.doi.org/10.1016/j.nima.2015.10.024

80. Hunt, S. Characterization of a *1*0B-Doped Liquid Scintillator as a Capture-Gated Neutron Spectrometer / S.Hunt, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.108-114. - Bibliogr.:28.

http://dx.doi.org/10.1016/j.nima.2015.12.001

81. Jamil, A. Influence of Magnetic Fields on Charge Sharing Caused by Diffusion in Medipix Detectors with a Si Sensor / A.Jamil, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.19-26. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.nima.2015.11.117

82. Jeans, D. Tau Lepton Reconstruction at Collider Experiments Using Impact Parameters / D.Jeans // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.51-58. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nima.2015.11.030

83. Lee, Y. Comparison of Spectral CT Imaging Methods Based a Photon-Counting Detector: Experimental Study / Y.Lee, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.68-74. - Bibliogr.:29.

http://dx.doi.org/10.1016/j.nima.2016.01.069

84. Lin, J.Y.Y. MCViNE – An Object Oriented Monte Carlo Neutron Ray Tracing Simulation Package / J.Y.Y.Lin, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.86-99. - Bibliogr.:74.

http://dx.doi.org/10.1016/j.nima.2015.11.118

85. Lipschutz, S. Digital Data Acquisition for the Low Energy Neutron Detector Array (LENDA) / S.Lipschutz, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.1-6. - Bibliogr.:16.

http://dx.doi.org/10.1016/j.nima.2016.01.050

86. Nievas-Rosillo, M. Extending the Li&Ma Method to Include PSF Information / M.Nievas-Rosillo, J.L.Contreras // Astroparticle Physics. – 2016. – Vol.74. – p.51-57. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.001

87. Oh, S.H. An X-Ray Mapper for the Mu2e Experiment / S.H.Oh, C.Wang // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.64-68. - Bibliogr.:8.

http://dx.doi.org/10.1016/j.nima.2015.09.083

88. Orchard, G.M. Design and Function of an Electron Mobility Spectrometer with a Thick Gas Electron Multiplier / G.M.Orchard, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.62-67. - Bibliogr.:22.

http://dx.doi.org/10.1016/j.nima.2016.01.055

89. Pappalardo, A. Characterization of the Silicon + *6LiF Thermal Neutron Detection Technique / A.Pappalardo, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.6-13. - Bibliogr.:29.

http://dx.doi.org/10.1016/j.nima.2015.11.114

90. Pausch, J. Finding Four Decay Components in Li Glass and Three Decay Components in CeBr&sub(3) Scintillation Light Pulses in the Temperature Range from −30&sup(o) to +50&sup(o) C by Iterative Subtraction of Composite Decays / J.Pausch, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.121-128. - Bibliogr.:26.

http://dx.doi.org/10.1016/j.nima.2015.11.002

91. Peng, M. A New Small-Angle Neutron Scattering Spectrometer at China Mianyang Research Reactor / M.Peng, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.63-67. - Bibliogr.:22.

http://dx.doi.org/10.1016/j.nima.2015.11.141

92. Regadio, A. Impact of Colored Noise in Pulse Amplitude Measurements: A Time-Domain Approach Using Differintegrals / A.Regadio, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.25-29. - Bibliogr.:18.

http://dx.doi.org/10.1016/j.nima.2015.12.010

93. Regis, J.-M. On the Time Response of Background Obtained in *g-ray Spectroscopy Experiments Using LaBr&sub(3)(Ce) Detectors with Different Shielding / J.-M.Regis, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.42-48. - Bibliogr.:26.

http://dx.doi.org/10.1016/j.nima.2015.12.017

94. Shimazoe, K. Fabrication and Characterization of Cubic SrI&sub(2)(Eu) Scintillators for Use in Array Detectors / K.Shimazoe, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.59-62. - Bibliogr.:10.

http://dx.doi.org/10.1016/j.nima.2015.11.140

95. Shinde, S. Effects of Film Thickness on Scintillation Characteristics of Columnar CsI:Tl Films Exposed to High Gamma Radiation Doses / S.Shinde, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.14-18. - Bibliogr.:31.

http://dx.doi.org/10.1016/j.nima.2015.11.122

96. Sun, W. Testing Flight Software on the Ground: Introducing the Hardware-in-the-Loop Simulation Method to the Alpha Magnetic Spectrometer on the International Space Station / W.Sun, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.83-90. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nima.2016.01.042

97. Tamborini, A. Development and Characterization of a 2D Scintillation Detector for Quality Assurance in Scanned Carbon Ion Beams / A.Tamborini, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.23-30. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nima.2016.01.040

98. Testov, D. The *3He Long-Counter TETRA at the ALTO ISOL Facility / D.Testov, Yu.Penionzhkevich, V.Smirnov, E.Sokol, [a.o.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.96-103. - Bibliogr.: 43.

http://dx.doi.org/10.1016/j.nima.2015.11.150

99. Ulyanov, A. Performance of a Monolithic LaBr&sub(3):Ce Crystal Coupled to an Array of Silicon Photomultipliers / A.Ulyanov, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.107-119. - Bibliogr.:33.

http://dx.doi.org/10.1016/j.nima.2015.11.148

100. Valtonen, E. Fabrication of a Thin Silicon Detector with Excellent Thickness Uniformity / E.Valtonen, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.27-31. - Bibliogr.:24.

http://dx.doi.org/10.1016/j.nima.2015.11.124

101. Vandebrouck, M. Dual Position Sensitive MWPC for Tracking Reaction Products at VAMOS + + / M.Vandebrouck, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.112-117. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nima.2015.12.040

102. Voss, A. The Collinear Fast Beam Laser Spectroscopy (CFBS) Experiment at TRIUMF / A.Voss, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.57-69. - Bibliogr.:27.

http://dx.doi.org/10.1016/j.nima.2015.11.145

103. Xie, M. Thermal Conditions on the International Space Station: Effects of Operations of the Station Main Radiators on the Alpha Magnetic Spectrometer / M.Xie, J.Burger // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.50-56. - Bibliogr.:6.

http://dx.doi.org/10.1016/j.nima.2016.01.048

104. Yang, B. Improvement and Luminescent Mechanism of Bi&sub(4)Si&sub(3)O&sub(12) Scintillation Crystals by Dy*3*+ Doping / B.Yang, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.1-4. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nima.2015.10.033

105. Zvejnieks, G. Void Lattice Formation in Electron Irradiated CaF&sub(2): Statistical Analysis of Experimental Data and Cellular Automata Simulations / G.Zvejnieks, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.138-143. - Bibliogr.:44.

http://dx.doi.org/10.1016/j.nimb.2015.11.037

С 344.2 - Поляризованные мишени

106. Lowry, M.M. A Cryostat to Hold Frozen-Spin Polarized HD Targets in CLAS: HDice-II / M.M.Lowry, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.31-41. - Bibliogr.:12.

http://dx.doi.org/10.1016/j.nima.2015.12.063

С 344.3 - Ядерная электроника

107. Choi, J.H. Slow Control Systems of the Reactor Experiment for Neutrino Oscillation / J.H.Choi, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.100-106. - Bibliogr.:9.

http://dx.doi.org/10.1016/j.nima.2015.11.152

С 344.4а - Методы приготовления мишеней

108. Bystritsky, V.M. Targets of Deuterides TiD&sub(2), ZrD&sub(2), NbD, and CrD&sub(2) with Different Structures Used in Experiments on the Study of pd and dd Reactions at Astrophysical Energies / V.M.Bystritsky, G.N.Dudkin, M.Filipowicz, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.80-85. - Bibliogr.:18.

http://dx.doi.org/10.1016/j.nima.2015.12.006

С 345 - Ускорители заряженных частиц

109. Amato, E. Study of the Production Yields of *1*8F, *1*1C, *1*3N and *1*5O Positron Emitters from Plasma-Laser Proton Sources at ELI-Beamlines for Labeling of PET Radiopharmaceuticals / E.Amato, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.1-5. - Bibliogr.:40.

http://dx.doi.org/10.1016/j.nima.2015.12.011

110. An, F. The Detector System of the Daya Bay Reactor Neutrino Experiment / F.An, I.Butorov, M.Gonchar, Y.A.Gornushkin, D.Naumov, E.Naumova, A.Olshevskiy, D.Taychenachev, [a.o.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.133-161. - Bibliogr.:76.

http://dx.doi.org/10.1016/j.nima.2015.11.144

111. Antonelli, M. Novel Proposal for a Low Emittance Muon Beam Using Positron Beam on Target / M.Antonelli, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.101-107. - Bibliogr.:13.

http://dx.doi.org/10.1016/j.nima.2015.10.097

112. Bassi, G. Analysis of Coupled-Bunch Instabilities for the NSLS-II Storage Ring with a 500 MHz 7-Cell PETRA-III Cavity / G.Bassi, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.151-163. - Bibliogr.:47.

http://dx.doi.org/10.1016/j.nima.2015.11.151

113. Frasciello, O. Geometric Beam Coupling Impedance of LHC Secondary Collimators / O.Frasciello, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.68-73. - Bibliogr.:15.

http://dx.doi.org/10.1016/j.nima.2015.11.139

114. Geraldes, R. New Sensor and Non-Contact Geometrical Survey for the Vibrating Wire Technique / R.Geraldes, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.115-123. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nima.2015.12.016

115. Ovsyannikov, V.P. Main Magnetic Focus Ion Source: Basic Principles, Theoretical Predictions and Experimental Confirmations / V.P.Ovsyannikov, A.V.Nefiodov // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – p.32-41. - Bibliogr.:21.

http://dx.doi.org/10.1016/j.nimb.2016.01.001

116. Petrov, F.B. Electron Cloud Wakefields in Bunch Trains / F.B.Petrov, O.Boine-Frankenheim // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.172-181. - Bibliogr.:31.

http://dx.doi.org/10.1016/j.nima.2015.11.115

С 345 о - Электронная и ионная оптика. Формирование и анализ пучков

117. Bokor, J. An Ion-Optical Design Study of a Carbon-Ion Rotating Gantry with a Superconducting Final Bending Magnet / J.Bokor, M.Pavlovic // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – p.122-133. - Bibliogr.:44.

http://dx.doi.org/10.1016/j.nima.2015.12.058

118. Cantero, E.D. Design of a Compact Faraday Cup for Low Energy, Low Intensity Ion Beams / E.D.Cantero, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.86-93. - Bibliogr.:11.

http://dx.doi.org/10.1016/j.nima.2015.09.096

119. Cohen, E.O. Development of a Scintillating-Fiber Beam Detector for the MUSE Experiment / E.O.Cohen, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.75-82. - Bibliogr.:16.

http://dx.doi.org/10.1016/j.nima.2016.01.044

120. D'Arcy, R. Characterisation of the PXIE Allison-Type Emittance Scanner / R.D'Arcy, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.7-17. - Bibliogr.:14.

http://dx.doi.org/10.1016/j.nima.2016.01.039

121. Dash, R. Analysis of Transverse RMS Emittance Growth of a Beam Induced by Spherical and Chromatic Aberration in a Solenoidal Field / R.Dash, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.94-100. - Bibliogr.:25.

http://dx.doi.org/10.1016/j.nima.2015.10.074

122. Krus, M. Quadrupole Lens-Free Multiple-Profile Diagnostics for Emittance Measurement of Laser Wakefield Accelerated Electron Beams / M.Krus, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.32-36. - Bibliogr.:25.

http://dx.doi.org/10.1016/j.nima.2015.11.116

123. Lu, X. Design of High-Current Low-Energy Beam Transport Line for an Intense D-T/D-D Neutron Generator / X.Lu, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – p.76-81. - Bibliogr.:16.

http://dx.doi.org/10.1016/j.nima.2015.11.156

С 346.1 - Нейтрино

124. Faessler, A. Can Electron Capture Tell Us the Mass of the Neutrino? / A.Faessler, F.Simkovic // Physica Scripta. – 2016. – Vol.91, No.4. – p.043007. - Bibliogr.:20.

http://dx.doi.org/10.1088/0031-8949/91/4/043007

125. Gupta, N. Very High Energy Antineutrinos from Photo-Disintegration of Cosmic Ray Nuclei / N.Gupta // Astroparticle Physics. – 2016. – Vol.74. – p.1-5. - Bibliogr.:27.

http://dx.doi.org/10.1016/j.astropartphys.2015.08.003

С 346.2 - Нуклоны и антинуклоны

126. Aramaki, T. Antideuteron Sensitivity for the GAPS Experiment / T.Aramaki, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.6-13. - Bibliogr.:33.

http://dx.doi.org/10.1016/j.astropartphys.2015.09.001

С 346.6 - Резонансы и новые частицы

127. Castro-Medina, J. Decays Z *> *g*g and Z *> gg in the Standard Model Extension / J.Castro-Medina, [et al.] // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1550216. - Bibliogr.:121.

http://dx.doi.org/10.1142/S0217751X15502164

128. Del Duca, V. Top Physics at the LHC / V.Del Duca, E.Laenen // International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – p.1530063. - Bibliogr.:251.

http://dx.doi.org/10.1142/S0217751X1530063X

129. Tiwari, S.C. Axion Electrodynamics in the Duality Perspective / S.C.Tiwari // Modern Physics Letters A. – 2015. – Vol.30, No.40. – p.1550204. - Bibliogr.:34.

http://dx.doi.org/10.1142/S0217732315502041

С 347 - Космические лучи

130. Billoir, P. Exploiting the Geomagnetic Distortion of Inclined Atmospheric Showers / P.Billoir, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.14-26. - Bibliogr.:22.

http://dx.doi.org/10.1016/j.astropartphys.2015.09.004

131. De Vries, K.D. The Cosmic-Ray Air-Shower Signal in Askaryan Radio Detectors / K.D.De Vries, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.96-104. - Bibliogr.:45.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.003

132. Fortes, E.C.F.S. Secluded WIMPs, Dark QED with Massive Photons, and the Galactic Center Gamma-Ray Excess / E.C.F.S.Fortes, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.87-95. - Bibliogr.:50.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.010

133. Fujii, T. Detection of Ultra-High Energy Cosmic Ray Showers with a Single-Pixel Fluorescence Telescope / T.Fujii, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.64-72. - Bibliogr.:39.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.006

134. Hubert, G. Long and Short-Term Atmospheric Radiation Analyses Based on Coupled Measurements at High Altitude Remote Stations and Extensive Air Shower Modeling / G.Hubert, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.27-36. - Bibliogr.:42.

http://dx.doi.org/10.1016/j.astropartphys.2015.09.005

135. Kostunin, D. Reconstruction of Air-Shower Parameters for Large-Scale Radio Detectors Using the Lateral Distribution / D.Kostunin, [et al.] // Astroparticle Physics. – 2016. – Vol.74. – p.79-86. - Bibliogr.:22.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.004

136. Ohta, I.S. Measurement of Microwave Radiation from Electron Beam in the Atmosphere / I.S.Ohta, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – p.44-50. - Bibliogr.:18.

http://dx.doi.org/10.1016/j.nima.2015.11.113

С 349 - Дозиметрия и физика защиты

137. Marrale, M. EPR/Alanine Dosimetry for Two Therapeutic Proton Beams / M.Marrale, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.96-102. - Bibliogr.:50.

http://dx.doi.org/10.1016/j.nimb.2015.12.022

С 349.1 - Действие излучения на материалы

138. Chen, L. Study of Modifications in the Mechanical Properties of Sodium Aluminoborosilicate Glass Induced by Heavy Ions and Electrons / L.Chen, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – p.42-48. - Bibliogr.:37.

http://dx.doi.org/10.1016/j.nimb.2016.01.007

139. Hao, S. Surface Modification of 40CrNiMo7 Steel with High Current Pulsed Electron Beam Treatment / S.Hao, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.81-85. - Bibliogr.:24.

http://dx.doi.org/10.1016/j.nimb.2015.11.039

140. Khan, M.F. 700 keV Ni*+*2 Ions Induced Modification in Structural, Surface, Magneto-Optic and Optical Properties of ZnO Thin Films / M.F.Khan, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.45-49. - Bibliogr.:41.

http://dx.doi.org/10.1016/j.nimb.2015.12.010

141. Koul, D.K. Impact of Firing on the OSL Luminescence Properties of Natural Quartz: A Case Study / D.K.Koul, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – p.86-93. - Bibliogr.:38.

http://dx.doi.org/10.1016/j.nimb.2016.01.018

142. Li, B. Irradiation-Initiated Plastic Deformation in Prestrained Single-Crystal Copper / B.Li, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.60-65. - Bibliogr.:43.

http://dx.doi.org/10.1016/j.nimb.2015.12.011

143. Rafique, M. Surface, Structural and Tensile Properties of Proton Beam Irradiated Zirconium / M.Rafique, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.120-128. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nimb.2015.12.001

144. Wang, Q. Water Swelling Properties of the Electron Beam Irradiated PVA-g-AAc Hydrogels / Q.Wang, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.90-95. - Bibliogr.:30.

http://dx.doi.org/10.1016/j.nimb.2015.12.020

С 350 - Приложения методов ядерной физики в смежных областях

145. Ghani, M.U. Investigation of Spatial Resolution Characteristics of an in Vivo Microcomputed Tomography System / M.U.Ghani, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.129-136. - Bibliogr.:27.

http://dx.doi.org/10.1016/j.nima.2015.11.007

146. Valdesueiro, D. Enhancing the Activation of Silicon Carbide Tracer Particles for PEPT Applications Using Gas-Phase Deposition of Alumina at Room Temperature and Atmospheric Pressure / D.Valdesueiro, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.108-113. - Bibliogr.:54.

http://dx.doi.org/10.1016/j.nima.2015.10.111

С 353 - Физика плазмы

147. Rahman, O. Nonlinear Propagation of Dust-Ion-Acoustic Solitary Waves in an Unmagnetized Dusty Plasma with Trapped Particle Distribution / O.Rahman // Modern Physics Letters A. – 2015. – Vol.30, No.40. – p.1550216. - Bibliogr.:43.

http://dx.doi.org/10.1142/S0217732315502168

148. Sharma, P. Radiative Condensation Instability in Partially Ionized Dusty Plasma with Polarization Force / P.Sharma, S.Jain // Physica Scripta. – 2016. – Vol.91, No.1. – p.015602. - Bibliogr.:30.

http://dx.doi.org/10.1088/0031-8949/91/1/015602

149. Zheng, J. Nonlinear Alfven Wave Propagating in Ideal MHD Plasmas / J.Zheng, [et al.] // Physica Scripta. – 2016. – Vol.91, No.1. – p.015601. - Bibliogr.:24.

http://dx.doi.org/10.1088/0031-8949/91/1/015601

150. Дмитриев, С.П. Непрямая оптическая ориентация атомов в He-Cs газоразрядной плазме: объяснение аномального соотношения сигналов магнитного резонанса / С.П.Дмитриев, [др.] // Оптика и спектроскопия. – 2016. – Т.120, №2. – с.217-221. - Библиогр.:9.

http://dx.doi.org/10.1134/S0030400X16020065

151. Иванов, В.А. Диссоциативная рекомбинация молекулярных ионов в He-Ne-плазме. Парциальные константы скорости образования атомов конфигураций 2р*53d и 2p*54d / В.А.Иванов, [др.] // Оптика и спектроскопия. – 2016. – Т.120, №2. – с.184-191. - Библиогр.:33.

http://dx.doi.org/10.1134/S0030400X16020120

152. Ломаев, М.И. Спектральные и амплитудно-временные характеристики излучения плазмы импульсно-периодического разряда, инициируемого убегающими электронами / М.И.Ломаев, [др.] // Оптика и спектроскопия. – 2016. – Т.120, №2. – с.179-183. - Библиогр.:15.

http://dx.doi.org/10.1134/S0030400X16020168

С 393 и2 - Электромагнитные и оптические свойства

153. Sarkar, K. Doping Dependence of Fluctuation Diamagnetism in High T&sub(c) Superconductors / K.Sarkar, [et al.] // Annals of Physics. – 2016. – Vol.365. – p.7-23. - Bibliogr.:68.

http://dx.doi.org/10.1016/j.aop.2015.11.003

С 393 и8 - Джозефсоновские сети

154. Пестов, Е.Е. Охлаждение джозефсоновских микросхем из купратных сверхпроводников в криоохладителе для использования в эталонах напряжения / Е.Е.Пестов, [др.] // Поверхность. – 2016. – №3. – с.41-45. - Библиогр.:22.

http://dx.doi.org/10.1134/S1027451016020154

С 44 - Аналитическая химия

155. Catalano, O. Volcanoes Muon Imaging Using Cherenkov Telescopes / O.Catalano, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.5-12. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nima.2015.10.065

156. Nakano, K. XRD Study of Yttria Stabilized Zirconia Irradiated with 7.3 MeV Fe, 10 MeV I, 16 MeV Au, 200 MeV Xe and 2.2 GeV Au Ions / K.Nakano, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – p.67-72. - Bibliogr.:17.

http://dx.doi.org/10.1016/j.nimb.2016.01.006

157. Perrett, G.M. Refinement of the Compton–Rayleigh Scatter Ratio Method for Use on the Mars Science Laboratory Alpha Particle X-Ray Spectrometer: II – Extraction of Invisible Element Content / G.M.Perrett, [et al.] // Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – p.129-137. - Bibliogr.:15.

http://dx.doi.org/10.1016/j.nimb.2015.10.076

158. Rameback, H. On the Accuracy of Gamma Spectrometric Isotope Ratio Measurements of Uranium / H.Rameback, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.57-61. - Bibliogr.:24.

http://dx.doi.org/10.1016/j.nima.2016.01.056

С 63 - Астрофизика

159. Lee, M.-J. Non-Thermal Dupree Diffusivity and Shielding Effects on Atomic Collisions in Astrophysical Turbulent Plasmas / M.-J.Lee, Y.-D.Jung // Astroparticle Physics. – 2016. – Vol.74. – p.58-63. - Bibliogr.:36.

http://dx.doi.org/10.1016/j.astropartphys.2015.10.002

Ц 84 - Вычислительная техника и программирование

160. Hartwig, Z.S. The ADAQ Framework: An Integrated Toolkit for Data Acquisition and Analysis with Real and Simulated Radiation Detectors / Z.S.Hartwig // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – p.42-49. - Bibliogr.:12.

http://dx.doi.org/10.1016/j.nimb.2016.01.017

Ц 840 г - Программирование АСУ

161. Mertzimekis, T.J. An Online Database of Nuclear Electromagnetic Moments / T.J.Mertzimekis, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – p.56-60. - Bibliogr.:23.

http://dx.doi.org/10.1016/j.nima.2015.10.096

СПИСОК ПРОСМОТРЕННЫХ ЖУРНАЛОВ


1. Annals of Physics. – 2016. – Vol.365. – P.1-236.

2. Astroparticle Physics. – 2016. – Vol.74. – P.1-104.

3. International Journal of Modern Physics A. – 2015. – Vol.30, No.35. – P.1530062-1-1550216-21.

4. International Journal of Modern Physics E. – 2015. – Vol.24, No.12. – p.1550091-1-1599001-9.

5. Modern Physics Letters A. – 2015. – Vol.30, No.40. – P.1530030-1-1599001-12.

6. Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.807. – P.1-150.

7. Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.810. – P.1-186.

8. Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.811. – P.1-170.

9. Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.812. – P.1-144.

10. Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.815. – P.1-104.

11. Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.368. – P.1-144.

12. Nuclear Instruments & Methods in Physics Research B. – 2016. – Vol.370. – P.1-114.

13. Physica Scripta. – 2016. – Vol.91, No.1. – P.010401-015803.

14. Physica Scripta. – 2016. – Vol.91, No.2. – P.023008-025803.

15. Physica Scripta. – 2016. – Vol.91, No.4. – P.040301-049601.

16. Оптика и спектроскопия. – 2016. – Т.120, №2. – С.179-352.

17. Поверхность. – 2016. – №3. – С.1-112.