ИНФОРМАЦИОННЫЙ БЮЛЛЕТЕНЬ «СТАТЬИ» № 45                         07.11.2016

 

С 1 - Математика

1. Керимов, М.К. К 60-летию со дня рождения профессора Александра Алексеевича Шананина / М.К.Керимов // Журнал вычислительной математики и математической физики. – 2016. – Т.56, №8. – с.1383-1384.

 

С 133 - Дифференциальные и интегральные уравнения

2. Белошапко, В.А. Асимптотика решения сингулярно возмущенной эллиптической задачи с трехзонным пограничным слоем / В.А.Белошапко, В.Ф.Бутузов // Журнал вычислительной математики и математической физики. – 2016. – Т.56, №8. – с.1428-1440. - Библиогр.:5.

http://dx.doi.org/10.1134/S0965542516080042

3. Брагин, М.Д. О точном пространственном расщеплении многомерного скалярного квазилинейного гиперболического закона сохранения / М.Д.Брагин, Б.В.Рогов // Доклады Академии Наук. – 2016. – Т.469, №2. – с.143-147. - Библиогр.:15.

http://dx.doi.org/10.1134/S1064562416040086

С 15 - Теория вероятностей и математическая статистика

4. Breuer, H.-P. Non-Markovian Dynamics in Open Quantum Systems / H.-P.Breuer, [et al.] // Reviews of Modern Physics. – 2016. – Vol.88, No.2. – p.021002. - Bibliogr.:273.

http://dx.doi.org/10.1103/RevModPhys.88.021002

С 17 - Вычислительная математика. Таблицы

5. Ахунов, Р.Р. Многократное решение систем линейных алгебраических уравнений итерационным методом с адаптивным переформированием предобусловливателя / Р.Р.Ахунов, [др.] // Журнал вычислительной математики и математической физики. – 2016. – Т.56, №8. – с.1395-1400. - Библиогр.:7.

http://dx.doi.org/10.1134/S0965542516080030

6. Галиев, Ш.И. Численный метод оптимизации упаковок правильных выпуклых многоугольников / Ш.И.Галиев, М.С.Лисафина // Журнал вычислительной математики и математической физики. – 2016. – Т.56, №8. – с.1416-1427. - Библиогр.:27.

http://dx.doi.org/10.1134/S0965542516080066

7. Моисеев, Н.Я. Модифицированный метод расщепления для решения нестационарного кинетического уравнения переноса частиц / Н.Я.Моисеев, В.М.Шмаков // Журнал вычислительной математики и математической физики. – 2016. – Т.56, №8. – с.1480-1490. - Библиогр.:29.

http://dx.doi.org/10.1134/S096554251608011X

С 3 - Физика

8. APS Recognises Nucleon Structure // CERN Courier. – 2016. – Vol.56, No.7. – p.46. - Содер.: A.Radyushkin.

http://inis.jinr.ru/sl/NTBLIB/CERN_Courier_2016_N7_P46.pdf

9. Guido Vegni 1931–2016 // CERN Courier. – 2016. – Vol.56, No.7. – p.53.

http://cerncourier.com/cws/article/cern/65821

10. Nikolai Maksimovich Shumeiko 1942-2016 // CERN Courier. – 2016. – Vol.56, No.7. – p.53.

http://inis.jinr.ru/sl/NTBLIB/CERN_Courier_2016_N7_P53.pdf

11. Pablo Rodriguez Perez 1976–2016 // CERN Courier. – 2016. – Vol.56, No.7. – p.52.

http://cerncourier.com/cws/article/cern/65821

12. Victor Alexandrovich Karnaukhov 1930-2016 // CERN Courier. – 2016. – Vol.56, No.7. – p.52.

http://inis.jinr.ru/sl/NTBLIB/CERN_Courier_2016_N7_P52.pdf

13. Koeth, T. Helen Edwards 1936–2016 / T.Koeth // CERN Courier. – 2016. – Vol.56, No.7. – p.51.

http://cerncourier.com/cws/article/cern/65821

14. Rossi, P. Jefferson Lab: Present and Future / P.Rossi // Few-Body Systems. – 2016. – Vol.57, No.8. – p.681-686. - Bibliogr.:10.

http://dx.doi.org/10.1007/s00601-016-1101-5

15. Shifman, M. Stephen Gasiorowicz 1928–2016 / M.Shifman, A.Vainshein // CERN Courier. – 2016. – Vol.56, No.7. – p.51-52.

http://cerncourier.com/cws/article/cern/65821

С 321 - Классическая механика

16. Ito, Y. Turbulent Mixing of a Passive Scalar in Grid Turbulence / Y.Ito, [et al.] // Physica Scripta. – 2016. – Vol.91, No.7. – p.074002. - Bibliogr.:28.

http://dx.doi.org/10.1088/0031-8949/91/7/074002

17. Langguth, L. Drexhage’s Experiment for Sound / L.Langguth, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.224301. - Bibliogr.:47.

http://dx.doi.org/10.1103/PhysRevLett.116.224301

18. Аристов, С.Н. Напряжения Бельтрами в упругом теле / С.Н.Аристов, И.Э.Келлер // Доклады Академии Наук. – 2016. – Т.469, №2. – с.177-180. - Библиогр.:10.

http://dx.doi.org/10.1134/S1028335816070065

С 322 - Теория относительности

19. Abbott, B.P. GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence / B.P.Abbott, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241103. - Bibliogr.:89.

http://dx.doi.org/10.1103/PhysRevLett.116.241103

20. Abbott, D. Tests of General Relativity with GW150914 / D.Abbott, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.221101. - Bibliogr.:109.

http://dx.doi.org/10.1103/PhysRevLett.116.221101

21. Barausse, E. Theory-Agnostic Constraints on Black-Hole Dipole Radiation with Multiband Gravitational-Wave Astrophysics / E.Barausse, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241104. - Bibliogr.:84.

http://dx.doi.org/10.1103/PhysRevLett.116.241104

22. Baumgarte, T.W. Critical Collapse of Rotating Radiation Fluids / T.W.Baumgarte, C.Gundlach // Physical Review Letters. – 2016. – Vol.116, No.22. – p.221103. - Bibliogr.:29.

http://dx.doi.org/10.1103/PhysRevLett.116.221103

23. Chen, Y.-J. Stronger Limits on Hypothetical Yukawa Interactions in the 30–8000 nm Range / Y.-J.Chen, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.221102. - Bibliogr.:28.

http://dx.doi.org/10.1103/PhysRevLett.116.221102

24. Lim, M.X. The External Magnetic Field Created by the Superposition of Identical Parallel Finite Solenoids / M.X.Lim, H.Greenside // American Journal of Physics. – 2016. – Vol.84, No.8. – p.606-615. - Bibliogr.:14.

http://dx.doi.org/10.1119/1.4948603

25. Price, R.H. Spatial Curvature, Spacetime Curvature, and Gravity / R.H.Price // American Journal of Physics. – 2016. – Vol.84, No.8. – p.588-592. - Bibliogr.:23.

http://dx.doi.org/10.1119/1.4955154

26. Van Den Berg, R. Separation of Time Scales in a Quantum Newton’s Cradle / R.Van Den Berg, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.225302. - Bibliogr.:64.

http://dx.doi.org/10.1103/PhysRevLett.116.225302

С 323 - Квантовая механика

27. Baumgart, I. Ultrasensitive Magnetometer using a Single Atom / I.Baumgart, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240801. - Bibliogr.:39.

http://dx.doi.org/10.1103/PhysRevLett.116.240801

28. Bernardini, A.E. Perturbatively Deformed Defects in Poschl–Teller-Driven Scenarios for Quantum Mechanics / A.E.Bernardini, R.Da Rocha // Physics Letters A. – 2016. – Vol.380, No.29/30. – p.2279-2287. - Bibliogr.:77.

http://dx.doi.org/10.1016/j.physleta.2016.05.011

29. Chen, S.-L. Natural Framework for Device-Independent Quantification of Quantum Steerability, Measurement Incompatibility, and Self-Testing / S.-L.Chen, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240401. - Bibliogr.:101.

http://dx.doi.org/10.1103/PhysRevLett.116.240401

30. De Campos Valadares, E. Periodic Roads and Quantized Wheels / E.De Campos Valadares // American Journal of Physics. – 2016. – Vol.84, No.8. – p.581-587. - Bibliogr.:8.

http://dx.doi.org/10.1119/1.4955148

31. Guan, J.-Y. Observation of Quantum Fingerprinting Beating the Classical Limit / J.-Y.Guan, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240502. - Bibliogr.:39.

http://dx.doi.org/10.1103/PhysRevLett.116.240502

32. Kimchi-Schwartz, M.E. Stabilizing Entanglement Via Symmetry-Selective Bath Engineering in Superconducting Qubits / M.E.Kimchi-Schwartz, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240503. - Bibliogr.:29.

http://dx.doi.org/10.1103/PhysRevLett.116.240503

33. Mal, S. Optimal Violation of the Leggett–Garg Inequality for Arbitrary Spin and Emergence of Classicality Through Unsharp Measurements / S.Mal, A.S.Majumdar // Physics Letters A. – 2016. – Vol.380, No.29/30. – p.2265-2270. - Bibliogr.:66.

http://dx.doi.org/10.1016/j.physleta.2016.05.020

34. Matsuura, S. Mean Field Analysis of Quantum Annealing Correction / S.Matsuura, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.220501. - Bibliogr.:61.

http://dx.doi.org/10.1103/PhysRevLett.116.220501

35. Silvi, P. Crossover from Classical to Quantum Kibble-Zurek Scaling / P.Silvi, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.225701. - Bibliogr.:66.

http://dx.doi.org/10.1103/PhysRevLett.116.225701

36. Streltsov, A. Entanglement and Coherence in Quantum State Merging / A.Streltsov, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240405. - Bibliogr.:117.

http://dx.doi.org/10.1103/PhysRevLett.116.240405

37. Turker, Z. Super Bloch Oscillation in a PT Symmetric System / Z.Turker, C.Yuce // Physics Letters A. – 2016. – Vol.380, No.29/30. – p.2260-2264. - Bibliogr.:29.

http://dx.doi.org/10.1016/j.physleta.2016.05.008

38. Ubachs, W. Search for a Drifting Proton-Electron Mass Ratio from H&sub(2) / W.Ubachs, [et al.] // Reviews of Modern Physics. – 2016. – Vol.88, No.2. – p.021003. - Bibliogr.:175.

http://dx.doi.org/10.1103/RevModPhys.88.021003

С 323.1 - Релятивистские волновые уравнения. Уравнения типа Бете-Солпитера. Квазипотенциал

39. Carbonell, J. Scattering Solutions of Bethe–Salpeter Equation in Minkowski and Euclidean Spaces / J.Carbonell, V.A.Karmanov // Few-Body Systems. – 2016. – Vol.57, No.7. – p.533-539. - Bibliogr.:29.

http://dx.doi.org/10.1007/s00601-016-1105-1

40. Frederico, T. Inverting the Nakanishi Integral Relation for a Bound State Euclidean Bethe–Salpeter Amplitude / T.Frederico, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.7. – p.549-555. - Bibliogr.:24.

http://dx.doi.org/10.1007/s00601-016-1057-5

С 323.2 - Законы сохранения и общие теории реакций. Поляризационные эффекты. Инвариантное разложение амплитуд

41. Eichmann, G. Towards a Microscopic Understanding of Nucleon Polarizabilities / G.Eichmann // Few-Body Systems. – 2016. – Vol.57, No.7. – p.541-547. - Bibliogr.:25.

http://dx.doi.org/10.1007/s00601-016-1046-8

С 323.5 - Теория взаимодействия частиц при высоких энергиях

42. Alexandrou, C. Parton Distribution Functions from Lattice QCD / C.Alexandrou // Few-Body Systems. – 2016. – Vol.57, No.8. – p.621-626. - Bibliogr.:32.

http://dx.doi.org/10.1007/s00601-016-1073-5

43. Signori, A. Gluon TMDs in Quarkonium Production / A.Signori // Few-Body Systems. – 2016. – Vol.57, No.8. – p.651-655. - Bibliogr.:13.

http://dx.doi.org/10.1007/s00601-016-1102-4

44. Teryaev, O.V. Radon Transform and Light-Cone Distributions / O.V.Teryaev // Few-Body Systems. – 2016. – Vol.57, No.8. – p.627-631. - Bibliogr.:26.

http://dx.doi.org/10.1007/s00601-016-1104-2

45. Van der Veken, F.F. Identifying the Universal Part of TMDs / F.F.Van der Veken, N.G.Stefanis // Few-Body Systems. – 2016. – Vol.57, No.8. – p.657-662. - Bibliogr.:18.

http://dx.doi.org/10.1007/s00601-016-1068-2

46. Zhang, J.-H. Proton Spin Structure from Large Momentum Effective Theory / J.-H.Zhang, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.8. – p.615-620. - Bibliogr.:29.

http://dx.doi.org/10.1007/s00601-016-1077-1

С 324.1 - Вторично- квантованные локальные теории взаимодействующих полей

47. Kulshreshtha, U. Light-Front Quantization of the Vector Schwinger Model with a Photon Mass Term in Faddeevian Regularization / U.Kulshreshtha, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.7. – p.573-577. - Bibliogr.:19.

http://dx.doi.org/10.1007/s00601-016-1084-2

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

48. Bakker, B.L.G. Sensitivity of the DVCS Cross Section to the Compton Form Factors in Scalar QED / B.L.G.Bakker, C.-R.Ji // Few-Body Systems. – 2016. – Vol.57, No.7. – p.579-584. - Bibliogr.:7.

http://dx.doi.org/10.1007/s00601-016-1069-1

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

49. Lamm, H. Nonperturbative True Muonium on the Light Front with TMSWIFT / H.Lamm, R.F.Lebed // Few-Body Systems. – 2016. – Vol.57, No.8. – p.663-667. - Bibliogr.:38.

http://dx.doi.org/10.1007/s00601-016-1075-3

50. McKenney, J.R. SU(2) Flavor Asymmetry of the Proton Sea in Chiral Effective Theory / J.R.McKenney, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.7. – p.593-599. - Bibliogr.:42.

http://dx.doi.org/10.1007/s00601-016-1047-7

51. Pappalardo, L.L. HERMES Results on the 3D Imaging of the Nucleon / L.L.Pappalardo // Few-Body Systems. – 2016. – Vol.57, No.7. – p.585-591. - Bibliogr.:23.

http://dx.doi.org/10.1007/s00601-016-1045-9

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

52. Chabysheva, S.S. Light-Front *f*4&sub(1+1) Theory Using a Many-Boson Symmetric-Polynomial Basis / S.S.Chabysheva // Few-Body Systems. – 2016. – Vol.57, No.8. – p.675-680. - Bibliogr.:21.

http://dx.doi.org/10.1007/s00601-016-1106-0

53. Hiller, J.R. Pauli–Villars Regularization of Non-Abelian Gauge Theories / J.R.Hiller // Few-Body Systems. – 2016. – Vol.57, No.7. – p.557-563. - Bibliogr.:37.

http://dx.doi.org/10.1007/s00601-016-1098-9

54. Martinovic, L. Two-Dimensional Massless Light Front Fields and Solvable Models / L.Martinovic, P.Grange // Few-Body Systems. – 2016. – Vol.57, No.7. – p.565-571. - Bibliogr.:20.

http://dx.doi.org/10.1007/s00601-016-1109-x

С 324.1д - Квантовая хромодинамика

55. Avakian, H. Studies of the 3D Structure of the Nucleon at JLab / H.Avakian // Few-Body Systems. – 2016. – Vol.57, No.8. – p.607-613. - Bibliogr.:62.

http://dx.doi.org/10.1007/s00601-016-1118-9

56. Brodsky, S.J. Light-Front Holography, Color Confinement, and Supersymmetric Features of QCD / S.J.Brodsky // Few-Body Systems. – 2016. – Vol.57, No.8. – p.703-715. - Bibliogr.:96.

http://dx.doi.org/10.1007/s00601-016-1070-8

57. Echevarria, M.G. T-Odd Gluon TMDs Inside a Transversely Polarized Hadron / M.G.Echevarria // Few-Body Systems. – 2016. – Vol.57, No.8. – p.645-649. - Bibliogr.:28.

http://dx.doi.org/10.1007/s00601-016-1088-y

58. Gomez-Rocha, M. Asymptotic Freedom of Gluons in Hamiltonian Dynamics / M.Gomez-Rocha, S.D.Glazek // Few-Body Systems. – 2016. – Vol.57, No.7. – p.509-513. - Bibliogr.:12.

http://dx.doi.org/10.1007/s00601-016-1078-0

59. Kulshreshtha, D.S. Light-Front Quantization of the Restricted Gauge Theory of QCD&sub(2) / D.S.Kulshreshtha, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.8. – p.669-673. - Bibliogr.:13.

http://dx.doi.org/10.1007/s00601-016-1076-2

60. Mondal, C. A Comparative Study of Nucleon Structure in Light-Front Quark Models in AdS/QCD / C.Mondal, D.Chakrabarti // Few-Body Systems. – 2016. – Vol.57, No.8. – p.723-728. - Bibliogr.:13.

http://dx.doi.org/10.1007/s00601-016-1044-х

61. Pisano, S. Precise Measurements of DVCS at JLab and Quark Orbital Angular Momentum / S.Pisano // Few-Body Systems. – 2016. – Vol.57, No.8. – p.633-638. - Bibliogr.:36.

http://dx.doi.org/10.1007/s00601-016-1120-2

62. Xiong, X. Hadron Structures from Large Momentum Effective Field Theory / X.Xiong, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.8. – p.639-643. - Bibliogr.:17.

http://dx.doi.org/10.1007/s00601-016-1096-y

С 325 - Статистическая физика и термодинамика

63. Dean, D.S. Nonequilibrium Tuning of the Thermal Casimir Effect / D.S.Dean, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240602. - Bibliogr.:42.

http://dx.doi.org/10.1103/PhysRevLett.116.240602

64. Marcuzzi, M. Absorbing State Phase Transition with Competing Quantum and Classical Fluctuations / M.Marcuzzi, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.245701. - Bibliogr.:80.

http://dx.doi.org/10.1103/PhysRevLett.116.245701

65. Naik, I. Optically Tuned Poly (3-Hexylthiophene-2,5-Diyl) P3HT/PCBM (Modified Fullerene) Blend for Plastic Solar Cell / I.Naik, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.691-694. - Bibliogr.:5.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P691-694.pdf

66. Parmentier, F.D. Photon-Assisted Shot Noise in Graphene in the Terahertz Range / F.D.Parmentier, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.227401. - Bibliogr.:35.

http://dx.doi.org/10.1103/PhysRevLett.116.227401

67. Proesmans, K. Power-Efficiency-Dissipation Relations in Linear Thermodynamics / K.Proesmans, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.220601. - Bibliogr.:65.

http://dx.doi.org/10.1103/PhysRevLett.116.220601

68. Siddeswara, D.M.K. ZnO Decorated Graphene Nanosheets: an Advanced Material for the Electrochemical Performance and Photocatalytic Degradation of Organic Dyes / D.M.K.Siddeswara, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.678-682. - Bibliogr.:13.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P678-682.pdf

69. Suganthi, G. ZnS Nanoparticles Decorated Graphene Nanoplatelets as Immobilisation Matrix for Glucose Biosensor / G.Suganthi, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.637-642. - Bibliogr.:16.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P637-642.pdf

70. Давыдов, С.Ю. О роли температуры в задаче об адсорбции на графене / С.Ю.Давыдов // Журнал технической физики. – 2016. – Т.86, №7. – с.145-149. - Библиогр.:9.

http://journals.ioffe.ru/articles/viewPDF/43331

71. Смирнов, В.А. Полевой эффект при протонной и электронно-дырочной проводимости в транзисторе на основе оксида графена / В.А.Смирнов, [др.] // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.18-25. - Библиогр.:14.

http://journals.ioffe.ru/articles/viewPDF/43395

72. Хаматгалимов, А.Р. Структура молекул нестабильных фуллеренов C&sub(72)–C&sub(86), подчиняющихся правилу изолированных пентагонов / А.Р.Хаматгалимов, В.И.Коваленко // Успехи химии. – 2016. – Т.85, №8. – с.836-853. - Библиогр.:119.

http://dx.doi.org/10.1070/RCR4571

73. Шека, Е.Ф. О техническом графене - восстановленном оксиде графена - и его природном аналоге - шунгите / Е.Ф.Шека, Е.А.Голубев // Журнал технической физики. – 2016. – Т.86, №7. – с.74-80. - Библиогр.:21.

http://journals.ioffe.ru/articles/viewPDF/43319

С 325.1 - Точно решаемые и решеточные модели

74. Li, L. Influence of Weight Heterogeneity on Random Walks in Scale-Free Networks / L.Li, [et al.] // Journal of Physics A. – 2016. – Vol.49, No.27. – p.275101. - Bibliogr.:45.

http://dx.doi.org/10.1088/1751-8113/49/27/275101

75. Mandal, S. Entanglement and Majorana Edge States in the Kitaev Model / S.Mandal, M.Maiti, V.K.Varma // Physical Review B [Electronic resource]. – 2016. – Vol.94, No.4. – p.045421. - Bibliogr.:46.

http://dx.doi.org/10.1103/PhysRevB.94.045421

76. Wang, D.-W. Mesoscopic Superposition States Generated by Synthetic Spin-Orbit Interaction in Fock-State Lattices / D.-W.Wang, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.220502. - Bibliogr.:56.

http://dx.doi.org/10.1103/PhysRevLett.116.220502

77. Zhang, A.-X. Negative Refraction of Ultra-Cold Atoms in Optical Lattices with Nonuniform Artificial Gauge Fields / A.-X.Zhang, J.-K.Xue // Physics Letters A. – 2016. – Vol.380, No.29/30. – p.2307-2311. - Bibliogr.:35.

http://dx.doi.org/10.1016/j.physleta.2016.05.009

С 325.4 - Нелинейные системы. Хаос и синергетика. Фракталы

78. Baumert, H.Z. On Turbulence in Dilatant Dispersions / H.Z.Baumert, B.Wessling // Physica Scripta. – 2016. – Vol.91, No.7. – p.074003. - Bibliogr.:22.

http://dx.doi.org/10.1088/0031-8949/91/7/074003

79. Carlstrom, J. Quantum Walk in Degenerate Spin Environments / J.Carlstrom, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.247202. - Bibliogr.:29.

http://dx.doi.org/10.1103/PhysRevLett.116.247202

80. Galatolo, S. Rigorous Approximation of Stationary Measures and Convergence to Equilibrium for Iterated Function Systems / S.Galatolo, [et al.] // Journal of Physics A. – 2016. – Vol.49, No.27. – p.274001. - Bibliogr.:14.

http://dx.doi.org/10.1088/1751-8113/49/27/274001

С 325.8 - Квантовые объекты низкой размерности (за исключением эффектов Холла)

81. Mubofu, E.B. Cashew Nut Shells as Source of Chemicals for Preparation of Chalcogenide Nanoparticles / E.B.Mubofu, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.724-727. - Bibliogr.:22.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P724-727.pdf

82. Patil, P.B. Dynamic Study of Bismuth Telluride Quantum Dot Assisted Titanium Oxide for Efficient Photoelectrochemical Performance / P.B.Patil, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.604-608. - Bibliogr.:8.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P604-608.pdf

83. Zhang, Y. Analyses of Transverse Vibrations of Axially Pretensioned Viscoelastic Nanobeams with Small Size and Surface Effects / Y.Zhang, [et al.] // Physics Letters A. – 2016. – Vol.380, No.29/30. – p.2294-2299. - Bibliogr.:43.

http://dx.doi.org/10.1016/j.physleta.2016.05.016

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

84. Aneva, B.L. Matrix-Product Ansatz for the Totally Asymmetric Simple Exclusion Process with a Generalized Update on a Ring / B.L.Aneva, J.G.Brankov // Physical Review E [Electronic resource]. – 2016. – Vol.94, No.2. – p.022138. - Bibliogr.:65.

http://dx.doi.org/10.1103/PhysRevE.94.022138

85. Efimkin, D.K. Non-Markovian Quantum Friction of Bright Solitons in Superfluids / D.K.Efimkin, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.225301. - Bibliogr.:48.

http://dx.doi.org/10.1103/PhysRevLett.116.225301

86. Johnson, T.H. Hubbard Model for Atomic Impurities Bound by the Vortex Lattice of a Rotating Bose-Einstein Condensate / T.H.Johnson, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.240402. - Bibliogr.:73.

http://dx.doi.org/10.1103/PhysRevLett.116.240402

87. Liu, D. Insulating Nature of Strongly Correlated Massless Dirac Fermions in an Organic Crystal / D.Liu, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.226401. - Bibliogr.:43.

http://dx.doi.org/10.1103/PhysRevLett.116.226401

88. Mendonca, J.T. Wave-Kinetic Description of Finite Temperature Bose–Einstein Condensates / J.T.Mendonca // Journal of Physics A. – 2016. – Vol.49, No.27. – p.275501. - Bibliogr.:24.

http://dx.doi.org/10.1088/1751-8113/49/27/275501

89. Posazhennikova, A. Inflationary Quasiparticle Creation and Thermalization Dynamics in Coupled Bose-Einstein Condensates / A.Posazhennikova, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.225304. - Bibliogr.:28.

http://dx.doi.org/10.1103/PhysRevLett.116.225304

90. Yukalov, V.I. Statistical Systems with Nonintegrable Interaction Potentials / V.I.Yukalov // Physical Review E [Electronic resource]. – 2016. – Vol.94, No.1. – p.012106. - Bibliogr.:60.

http://dx.doi.org/10.1103/PhysRevE.94.012106

С 33 а - Нанофизика. Нанотехнология

91. Bulgakov, E.N. Spin Polarized Bound States in the Continuum in Open Aharonov–Bohm Rings with the Rashba Spin–Orbit Interaction / E.N.Bulgakov, A.F.Sadreev // Journal of Physics: Condensed Matter. – 2016. – Vol.28, No.26. – p.265301. - Bibliogr.:59.

http://dx.doi.org/10.1088/0953-8984/28/26/265301

92. Jain, V. Direct Measurement of Photon Recoil from a Levitated Nanoparticle / V.Jain, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.243601. - Bibliogr.:34.

http://dx.doi.org/10.1103/PhysRevLett.116.243601

93. Karthick, R. Study of Faraday Effect on Co&sub(1-x)Zn&sub(x)Fe&sub(2)O&sub(4) Nanoferrofluids / R.Karthick, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.624-628. - Bibliogr.:23.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P624-628.pdf

94. Meunier, V. Physical Properties of Low-Dimensional sp*2-Based Carbon Nanostructures / V.Meunier, [et al.] // Reviews of Modern Physics. – 2016. – Vol.88, No.2. – p.025005. - Bibliogr.:503.

http://dx.doi.org/10.1103/RevModPhys.88.025005

95. Mylarappa, M. Electro Chemical and Photo Catalytic Studies of MnO&sub(2) Nanoparticles from Waste Dry Cell Batteries / M.Mylarappa, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.657-661. - Bibliogr.:11.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P657-661.pdf

96. Pradyumnan, P.P. Superparamagnetism in FeCo Nanoparticles / P.P.Pradyumnan // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.675-677. - Bibliogr.:6.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P675-677.pdf

97. Selvamuthumari, J. Antibacterial and Catalytic Properties of Silver Nanoparticles Loaded Zeolite: Green Method for Synthesis of Silver Nanoparticles Using Lemon Juice as Reducing Agent / J.Selvamuthumari, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.768-773. - Bibliogr.:20.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P768-773.pdf

98. Wu, H.Y. Microwave Memristive Behavior in Split-Ring Resonator Metamaterials / H.Y.Wu, [et al.] // Laser Physics. – 2016. – Vol.26, No.7. – p.076002. - Bibliogr.:26.

http://dx.doi.org/10.1088/1054-660X/26/7/076002

99. Бондаренко, Б.И. Наножидкости для энергетики: экстренное охлаждение перегретых поверхностей теплообмена / Б.И.Бондаренко, [др.] // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.32-43. - Библиогр.:13.

http://journals.ioffe.ru/articles/viewPDF/43397

100. Дубровский, В.Г. Функция распределения полупроводниковых нитевидных нанокристаллов по длине / В.Г.Дубровский // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.44-50. - Библиогр.:20.

http://journals.ioffe.ru/articles/viewPDF/43398

101. Крутов, В.В. Создание микро- и нанодоменных структур в сегнетоэлектрических пленках с использованием интерферирующего гиперзвука / В.В.Крутов, [др.] // Доклады Академии Наук. – 2016. – Т.469, №2. – с.173-176. - Библиогр.:9.

http://dx.doi.org/10.1134/S1028335816070077

102. Крылов, П.Н. Структура и оптические свойства слоистых нанокомпозитов ZnSe/SiO&sub(2) / П.Н.Крылов, [др.] // Журнал технической физики. – 2016. – Т.86, №7. – с.69-73. - Библиогр.:37.

http://journals.ioffe.ru/articles/viewPDF/43318

С 332 - Электромагнитные взаимодействия

103. Aghion, S. Laser Excitation of the n=3 Level of Positronium for Antihydrogen Production / S.Aghion, V.Matveev, [a.o.] // Physical Review A [Electronic resource]. – 2016. – Vol.94, No.1. – p.012507. - Bibliogr.:50.

http://dx.doi.org/10.1103/PhysRevA.94.012507

104. Barnes, W.L. Particle Plasmons: Why Shape Matters / W.L.Barnes // American Journal of Physics. – 2016. – Vol.84, No.8. – p.593-601. - Bibliogr.:65.

http://dx.doi.org/10.1119/1.4948402

105. Begley, S. Optimized Multi-Ion Cavity Coupling / S.Begley, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.223001. - Bibliogr.:37.

http://dx.doi.org/10.1103/PhysRevLett.116.223001

106. Drummond, P.D. Quantum Simulations in Phase-Space: from Quantum Optics to Ultra-Cold Physics / P.D.Drummond, S.Chaturvedi // Physica Scripta. – 2016. – Vol.91, No.7. – p.073007. - Bibliogr.:93.

http://dx.doi.org/10.1088/0031-8949/91/7/073007

107. Edamatsu, K. Quantum Measurement and Uncertainty Relations in Photon Polarization / K.Edamatsu // Physica Scripta. – 2016. – Vol.91, No.7. – p.073001. - Bibliogr.:38.

http://dx.doi.org/10.1088/0031-8949/91/7/073001

108. Eriksson, M. MAX IV Paves the Way for Ultimate X-Ray Microscope / M.Eriksson, D.Einfeld // CERN Courier. – 2016. – Vol.56, No.7. – p.38-42.

http://cerncourier.com/cws/article/cern/65818

109. Hemmerle, A. Reduction in Tension and Stiffening of Lipid Membranes in an Electric Field Revealed by X-Ray Scattering / A.Hemmerle, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.228101. - Bibliogr.:32.

http://dx.doi.org/10.1103/PhysRevLett.116.228101

110. Kramer, S.L. Shielding Synchrotron Light Sources: Advantages of Circular Shield Walls Tunnels / S.L.Kramer, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.24-31. - Bibliogr.:8.

http://dx.doi.org/10.1016/j.nima.2016.04.094

111. Lee, S. PAL-XFEL Cavity Beam Position Monitor Pick-up Design and Beam Test / S.Lee, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.107-117. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.nima.2016.04.057

112. Li, Z. 188 W Nanosecond Pulsed Fiber Amplifier at 1064 nm / Z.Li, [et al.] // Laser Physics. – 2016. – Vol.26, No.7. – p.075103. - Bibliogr.:11.

http://dx.doi.org/10.1088/1054-660X/26/7/075103

113. Osada, A. Cavity Optomagnonics with Spin-Orbit Coupled Photons / A.Osada, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.223601. - Bibliogr.:36.

http://dx.doi.org/10.1103/PhysRevLett.116.223601

114. Ryc, L. Development of x-Ray and Ion Diagnostics of Plasma Obtained with a 10-TW Femtosecond Laser / L.Ryc, [et al.] // Physica Scripta. – 2016. – Vol.91, No.7. – p.074008. - Bibliogr.:21.

http://dx.doi.org/10.1088/0031-8949/91/7/074008

115. Schmidt, S. Frustrated Polaritons / S.Schmidt // Physica Scripta. – 2016. – Vol.91, No.7. – p.073006. - Bibliogr.:93.

http://dx.doi.org/10.1088/0031-8949/91/57/073006

116. Wei, K. Peak Power Tunable Mid-Infrared Oscillator Pumped by a High Power Picosecond Pulsed Fiber Amplifier with Bunch Output / K.Wei, [et al.] // Laser Physics. – 2016. – Vol.26, No.7. – p.075101. - Bibliogr.:15.

http://dx.doi.org/10.1088/1054-660X/26/7/075101

С 341 а - Различные модели ядер

117. Bijker, R. Geometrical Symmetries of Nuclear Systems: D&sub(3h) and *T&sub(d) Symmetries in Light Nuclei / R.Bijker // Physica Scripta. – 2016. – Vol.91, No.7. – p.073005. - Bibliogr.:74.

http://dx.doi.org/10.1088/0031-8949/91/7/073005

118. Egido, J.L. State-of-the-Art of Beyond Mean Field Theories with Nuclear Density Functionals / J.L.Egido // Physica Scripta. – 2016. – Vol.91, No.7. – p.073003. - Bibliogr.:138.

http://dx.doi.org/10.1088/0031-8949/91/7/073003

119. Nakatsukasa, T. Quantal Rotation and Its Coupling to Intrinsic Motion in Nuclei / T.Nakatsukasa, [et al.] // Physica Scripta. – 2016. – Vol.91, No.7. – p.073008. - Bibliogr.:94.

http://dx.doi.org/10.1088/0031-8949/91/7/073008

С 341 е - Ядерная астрофизика

120. Dzhioev, A.A. Thermal Quasiparticle Random-Phase Approximation with Skyrme Interactions and Supernova Neutral-Current Neutrino-Nucleus Reactions / A.A.Dzhioev, A.I.Vdovin, G.Martinez-Pinedo, [a.o.] // Physical Review C [Electronic resource]. – 2016. – Vol.94, No.1. – p.015805. - Bibliogr.:36.

http://dx.doi.org/10.1103/PhysRevC.94.015805

С 341.1ж - Источники радиоактивных излучений. Источники нейтронов

121. McArthur, M.S. Reliability of Monte Carlo Simulations in Modeling Neutron Yields from a Shielded Fission Source / M.S.McArthur, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.46-51. - Bibliogr.:13.

http://dx.doi.org/10.1016/j.nima.2016.04.062

122. Whetstone, Z.D. Experimental Verification of a Method to Create a Variable Energy Neutron Beam from a Monoenergetic, Isotropic Source Using Neutron Elastic Scatter and Time of Flight / Z.D.Whetstone, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.95-101. - Bibliogr.:23.

http://dx.doi.org/10.1016/j.nima.2016.04.084

С 341.2 - Свойства атомных ядер

123. Chen, X.C. Evolution of Octupole Correlations in *1*2*3Ba / X.C.Chen, T.M.Shneidman, [a.o.] // Physical Review C [electronic resource]. – 2016. – Vol.94, No.2. – p.021301(R). - Bibliogr.:31.

http://dx.doi.org/10.1103/PhysRevC.94.021301

124. Renzi, F. Spectroscopy of *7He Using the *9Be(*6He,*8Be) Transfer Reaction / F.Renzi, S.I.Sidorchuk, R.Wolski, [a.o.] // Physical Review C [electronic resource]. – 2016. – Vol.94, No.2. – p.024619. - Bibliogr.:48.

http://dx.doi.org/10.1103/PhysRevC.94.024619

125. Zhang, Y.H. Storage Ring Mass Spectrometry for Nuclear Structure and Astrophysics Research / Y.H.Zhang, [et al.] // Physica Scripta. – 2016. – Vol.91, No.7. – p.073002. - Bibliogr.:216.

http://dx.doi.org/10.1088/0031-8949/91/7/073002

С 341.3 - Деление ядер

126. Artiushenko, M.Yu. Comparison of Neutron-Physical Characteristics of Uranium Target of Assembly "QUINTA" Irradiated by Relativistic Deuterons and *1*2 C Nuclei / M.Yu.Artiushenko, A.A.Baldin, A.I.Berlev, S.I.Tyutyunnikov, [et al.] // Вопросы атомной науки и техники. Сер. Ядерно-физические исследования = Питання атомноi науки i технiки = Problems of Atomic Science and Technology. Ser. Nuclear Physics Investigations. – 2016. – No.3(103). – p.74-78. - Bibliogr.:12.

 

С 342 - Прохождение частиц и гамма-квантов через вещество

127. Базаров, Б.А. Новая магнитная ловушка из постоянных магнитов для хранения ультрахолодных нейтронов / Б.А.Базаров, [др.] // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.1-8. - Библиогр.:4.

http://journals.ioffe.ru/articles/viewPDF/43393

С 343 - Ядерные реакции

128. Abelev, B. Near-Side Azimuthal and Pseudorapidity Correlations Using Neutral Strange Baryons and Mesons in d+Au, Cu+Cu, and Au+Au Collisions at *%s&sub(NN)=200 GeV / B.Abelev, G.Agakishiev, A.Aparin, G.S.Averichev, I.Bunzarov, T.G.Dedovich, L.G.Efimov, J.Fedorisin, P.Filip, A.Kechechyan, R.Lednicky, Y.Panebratsev, O.V.Rogachevskiy, E.Shahaliev, M.Tokarev, S.Vokal, Y.Zoulkarneeva, [a.o.] // Physical Review C [Electronic resource]. – 2016. – Vol.94, No.1. – p.014910. - Bibliogr.:36.

http://dx.doi.org/10.1103/PhysRevC.94.014910

129. Adamczewski-Musch, J. *Lp Interaction Studied via Femtoscopy in p+Nb Reactions at *%s&sub(NN)=3.18 GeV / J.Adamczewski-Musch, G.Agakishiev, S.Chernenko, O.Fateev, A.Ierusalimov, A.Kurilkin, P.Kurilkin, V.Ladygin, T.Vasiliev, Y.Zanevsky, [a.o.] // Physical Review C [electronic resource]. – 2016. – Vol.94, No.2. – p.025201. - Bibliogr.:56.

http://dx.doi.org/10.1103/PhysRevC.94.025201

130. Karapetyan, G.S. Interaction of *1*1B with *2*0*9Bi and *1*8*1Ta Targets at Intermediate Energies / G.S.Karapetyan, N.A.Demekhina, [a.o.] // Physical Review C [electronic resource]. – 2016. – Vol.94, No.2. – p.024618. - Bibliogr.:30.

http://dx.doi.org/10.1103/PhysRevC.94.024618

С 343 е - Ядерные реакции с тяжелыми ионами

131. Adam, J. Centrality Dependence of the Charged-Particle Multiplicity Density at Midrapidity in Pb-Pb Collisions at *%s&sub(NN)=5.02 TeV / J.Adam, B.Batyunya, S.Grigoryan, L.Malinina, K.Mikhaylov, P.Nomokonov, E.Rogochaya, A.Vodopyanov, S.Zaporozhets, [a.o.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.222302. - Bibliogr.:40.

http://dx.doi.org/10.1103/PhysRevLett.116.222302

132. Adamczyk, L. Beam-Energy Dependence of Charge Balance Functions from Au+Au Collisions at Energies Available at the BNL Relativistic Heavy Ion Collider / L.Adamczyk, G.Agakishiev, A.Aparin, G.S.Averichev, I.Bunzarov, T.G.Dedovich, L.G.Efimov, J.Fedorisin, P.Filip, A.Kechechyan, R.Lednicky, Y.Panebratsev, O.V.Rogachevskiy, E.Shahaliev, M.Tokarev, S.Vokal, Y.Zoulkarneeva, [a.o.] // Physical Review C [electronic resource]. – 2016. – Vol.94, No.2. – p.024909. - Bibliogr.:45.

http://dx.doi.org/10.1103/PhysRevC.94.024909

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

133. Bialek, A. A Rope-Net Support System for the Liquid Scintillator Detector for the SNO+ Experiment / A.Bialek, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.152-160. - Bibliogr.:12.

http://dx.doi.org/10.1016/j.nima.2016.04.114

134. Chen, L. Optimization of the Electron Collection Efficiency of a Large Area MCP-PMT for the JUNO Experiment / L.Chen, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.124-130. - Bibliogr.:25.

http://dx.doi.org/10.1016/j.nima.2016.04.100

135. Cheng, J.-H. Determination of the Total Absorption Peak in an Electromagnetic Calorimeter / J.-H.Cheng, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.165-170. - Bibliogr.:30.

http://dx.doi.org/10.1016/j.nima.2016.05.010

136. Ivanova, A.A. Fast Neutron Flux Analyzer with Real-Time Digital Pulse Shape Discrimination / A.A.Ivanova, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.13-17. - Bibliogr.:12.

http://dx.doi.org/10.1016/j.nima.2016.04.088

137. Kalkal, Y. Cerenkov Free-Electron Laser with Side Walls / Y.Kalkal, V.Kumar // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.85-94. - Bibliogr.:45.

http://dx.doi.org/10.1016/j.nima.2016.04.095

138. Liang, W.F. Application of LiTaO&sub(3) Pyroelectric Crystal for Pulsed Neutron Detection / W.F.Liang, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.161-164. - Bibliogr.:14.

http://dx.doi.org/10.1016/j.nima.2016.04.113

139. Liu, X. Count Rate Performance of a Silicon-Strip Detector for Photon-Counting Spectral CT / X.Liu, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.102-106. - Bibliogr.:20.

http://dx.doi.org/10.1016/j.nima.2016.04.087

140. Perez, M. Particle Detection and Classification Using Commercial off the Shelf CMOS Image Sensors / M.Perez, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.171-180. - Bibliogr.:34.

http://dx.doi.org/10.1016/j.nima.2016.04.072

141. Plimley, B. Angular Sensitivity of Modeled Scientific Silicon Charge-Coupled Devices to Initial Electron Direction / B.Plimley, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.18-23. - Bibliogr.:14.

http://dx.doi.org/10.1016/j.nima.2016.04.092

142. Qian, X. The Gaussian CL&sub(s) Method for Searches of New Physics / X.Qian, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.63-78. - Bibliogr.:30.

http://dx.doi.org/10.1016/j.nima.2016.04.089

143. Sulkosky, V. Studies of Relative Gain and Timing Response of Fine-Mesh Photomultiplier Tubes in High Magnetic Fields / V.Sulkosky, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.137-144. - Bibliogr.:15.

http://dx.doi.org/10.1016/j.nima.2016.04.111

144. Tang, Z. Measurement of Spin-Flip Probabilities for Ultracold Neutrons Interacting with Nickel Phosphorus Coated Surfaces / Z.Tang, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.32-38. - Bibliogr.:35.

http://dx.doi.org/10.1016/j.nima.2016.04.098

145. Wengrowicz, U. Alpha–Beta Monitoring System Based on Pair of Simultaneous Multi-Wire Proportional Counters / U.Wengrowicz, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.118-123. - Bibliogr.:12.

http://dx.doi.org/10.1016/j.nima.2016.04.102

146. Zhou, Y. A Large Dynamic Range Readout Design for the Plastic Scintillator Detector of DAMPE / Y.Zhou, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.79-84. - Bibliogr.:15.

http://dx.doi.org/10.1016/j.nima.2016.04.085

С 344.3 - Ядерная электроника

147. Acosta, D. CMS Gears Up for the LHC Data Deluge / D.Acosta, [et al.] // CERN Courier. – 2016. – Vol.56, No.7. – p.21-24.

http://cerncourier.com/cws/article/cern/65815

С 344.4б - Методы приготовления тонких пленок

148. Balakrishnan, G. Effect of Substrate Temperature on Microstructure and Properties of Nanocrystalline Titania Thin Films Prepared by Pulsed Laser Deposition / G.Balakrishnan, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.621-623. - Bibliogr.:13.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P621-623.pdf

149. Damodaran, A.R. New Modalities of Strain-Control of Ferroelectric Thin Films / A.R.Damodaran, [et al.] // Journal of Physics: Condensed Matter. – 2016. – Vol.28, No.26. – p.263001. - Bibliogr.:683.

http://dx.doi.org/10.1088/0953-8984/28/26/263001

150. Ganeshan, S. Optical and Structural Studies of the Vanadium Pentoxide Thin Films / S.Ganeshan, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.687-690. - Bibliogr.:13.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P687-690.pdf

151. Lingwal, V. Optical Properties of Sodium Niobate Thin Films / V.Lingwal, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.583-591. - Bibliogr.:25.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P583-591.pdf

152. Ramasundari, P. Characterization Studies on the Novel Mixed Thin Films / P.Ramasundari, [et al.] // Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – p.683-686. - Bibliogr.:11.

http://nanojournal.ifmo.ru/en/wp-content/uploads/2016/08/NPCM74P683-686.pdf

153. Соболь, О.В. Возможности структурной инженерии в многослойных вакуумно-дуговых ZrN/CrN-покрытиях путем изменения толщины нанослоев и подачи потенциала смещения / О.В.Соболь, [др.] // Журнал технической физики. – 2016. – Т.86, №7. – с.100-103. - Библиогр.:11.

http://journals.ioffe.ru/articles/viewPDF/43323

С 345 - Ускорители заряженных частиц

154. Banerjee, S. Classification of Electrical Discharges in DC Accelerators / S.Banerjee, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.131-136. - Bibliogr.:31.

http://dx.doi.org/10.1016/j.nima.2016.04.099

155. Винокуров, Н.А. Учет гистерезиса при расчете поля в элементах магнитных систем ускорителей / Н.А.Винокуров, [др.] // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.96-103. - Библиогр.:6.

http://journals.ioffe.ru/articles/viewPDF/43405

156. Зенин, А.А. Особенности фокусировки электронного пучка плазменного источника в форвакуумном диапазоне давлений / А.А.Зенин, [др.] // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.104-110. - Библиогр.:10.

http://journals.ioffe.ru/articles/viewPDF/43406

С 345 е - Фазотрон и сихрофазотрон. Ускорители на сверхвысокие энергии

157. Dou, W.-P. Beam Dynamic Design of a High Intensity Injector for Proton Linac / W.-P.Dou, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.145-151. - Bibliogr.:13.

http://dx.doi.org/10.1016/j.nima.2016.04.108

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

158. Stanja, J. Characterization of the NEPOMUC Primary and Remoderated Positron Beams at Different Energies / J.Stanja, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.52-62. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.nima.2016.04.093

С 346 - Элементарные частицы

159. Lenisa, P. Storage Ring Steps Up Search for Electric Dipole Moments / P.Lenisa, [et al.] // CERN Courier. – 2016. – Vol.56, No.7. – p.27-30.

http://cerncourier.com/cws/article/cern/65816

С 346.2 - Нуклоны и антинуклоны

160. Arriola, E.R. Proton–Proton On Shell Optical Potential at High Energies and the Hollowness Effect / E.R.Arriola, W.Broniowski // Few-Body Systems. – 2016. – Vol.57, No.7. – p.485-490. - Bibliogr.:32.

http://dx.doi.org/10.1007/s00601-016-1095-z

161. Bales, M.J. Precision Measurement of the Radiative *b Decay of the Free Neutron / M.J.Bales, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.242501. - Bibliogr.:37.

http://dx.doi.org/10.1103/PhysRevLett.116.242501

162. Lyubovitskij, V.E. Deuteron Electromagnetic Form Factors in AdS/QCD / V.E.Lyubovitskij, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.7. – p.503-507. - Bibliogr.:33.

http://dx.doi.org/10.1007/s00601-016-1079-z

163. Pace, E. Light-Front Dynamics and the *3He Spectral Function / E.Pace, [et al.] // Few-Body Systems. – 2016. – Vol.57, No.7. – p.601-606. - Bibliogr.:22.

http://dx.doi.org/10.1007/s00601-016-1067-3

С 346.6 - Резонансы и новые частицы

164. Aaij, R. First Observation of D*0−D^- *0 Oscillations in D*0 *> K*+*p*-*p*+*p*- Decays and Measurement of the Associated Coherence Parameters / R.Aaij, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241801. - Bibliogr.:30.

http://dx.doi.org/10.1103/PhysRevLett.116.241801

165. Aaij, R. Search for Violations of Lorentz Invariance and CPT Symmetry in B*0&sub((s)) Mixing / R.Aaij, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241601. - Bibliogr.:30.

http://dx.doi.org/10.1103/PhysRevLett.116.241601

166. Adam, J. Measurement of an Excess in the Yield of J/*q at Very Low p&sub(T) in Pb-Pb Collisions at *%s&sub(NN)=2.76 TeV / J.Adam, B.Batyunya, H.Grigorian, L.Malinina, K.Mikhaylov, P.Nomokonov, E.Rogochaya, A.Vodopyanov, S.Zaporozhets, [a.o.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.222301. - Bibliogr.:38.

http://dx.doi.org/10.1103/PhysRevLett.116.222301

167. Bellantuono, L. On J&sup(PC) = 0*-*- Exotic Glueball / L.Bellantuono // Few-Body Systems. – 2016. – Vol.57, No.8. – p.717-722. - Bibliogr.:22.

http://dx.doi.org/10.1007/s00601-016-1051-y

168. Browder, T. Belle II Super-B Factory Experiment Takes Shape at KEK / T.Browder, [et al.] // CERN Courier. – 2016. – Vol.56, No.7. – p.32-37.

http://cerncourier.com/cws/article/cern/65817

169. Kuflik, E. Elastically Decoupling Dark Matter / E.Kuflik, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.221302. - Bibliogr.:42.

http://dx.doi.org/10.1103/PhysRevLett.116.221302

С 347 - Космические лучи

170. Aab, A. Measurement of the Radiation Energy in the Radio Signal of Extensive Air Showers as a Universal Estimator of Cosmic-Ray Energy / A.Aab, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241101. - Bibliogr.:38.

http://dx.doi.org/10.1103/PhysRevLett.116.241101

171. Adriani, O. Time Dependence of the Electron and Positron Components of the Cosmic Radiation Measured by the PAMELA Experiment between July 2006 and December 2015 / O.Adriani, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241105. - Bibliogr.:42.

http://dx.doi.org/10.1103/PhysRevLett.116.241105

С 348 - Ядерные реакторы. Реакторостроение

172. Boustani, E. A Pragmatic Approach Towards Designing a Second Shutdown System for Tehran Research Reactor / E.Boustani, [et al.] // Nuclear Technology & Radiation Protection. – 2016. – Vol.31, No.1. – p.28-36. - Bibliogr.:20.

http://ntrp.vinca.rs/2016_1/Boustani_2016_1.pdf

173. Zivanovic, M.Z. Radon Measurements with Charcoal Canisters : Temperature and Humidity Considerations / M.Z.Zivanovic, [et al.] // Nuclear Technology & Radiation Protection. – 2016. – Vol.31, No.1. – p.65-72. - Bibliogr.:16.

http://ntrp.vinca.rs/2016_1/Zivanovic_2016_1.pdf

С 349 - Дозиметрия и физика защиты

174. Fattori, G. Real-Time Optical Tracking for Motion Compensated Irradiation with Scanned Particle Beams at CNAO / G.Fattori, [et al.] // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.39-45. - Bibliogr.:36.

http://dx.doi.org/10.1016/j.nima.2016.04.066

175. Sharma, M.K. Integrated Doses Calculation in Evacuation Scenarios of the Neutron Generator Facility at Missouri S&T / M.K.Sharma, A.B.Alajo // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.8-12. - Bibliogr.:15.

http://dx.doi.org/10.1016/j.nima.2016.04.061

С 349 д - Биологическое действие излучений

176. Ghavami, S.M. Monte Carlo Modeling of the Yttrium-90 Nanospheres Application in the Liver Radionuclide Therapy and Organs Doses Calculation / S.M.Ghavami, [et al.] // Nuclear Technology & Radiation Protection. – 2016. – Vol.31, No.1. – p.89-96. - Bibliogr.:32.

http://ntrp.vinca.rs/2016_1/Ghiasi_2016_1.pdf

С 349.1 - Действие излучения на материалы

177. Zebrev, G.I. Multiple Cell Upset Cross-Section Modeling: A Possible Interpretation for the Role of the Ion Energy-Loss Straggling and Auger Recombination / G.I.Zebrev, K.S.Zemtsov // Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – p.1-7. - Bibliogr.:24.

http://dx.doi.org/10.1016/j.nima.2016.04.097

С 350 - Приложения методов ядерной физики в смежных областях

178. Давыдов, В.В. О возможности определения термодинамической температуры коллоидных растворов методом ядерного магнитного резонанса / В.В.Давыдов, В.И.Дудкин // Журнал технической физики. – 2016. – Т.86, №7. – с.154-158. - Библиогр.:15.

http://journals.ioffe.ru/articles/viewPDF/43334

С 353 - Физика плазмы

179. Iqbal, J. Spatial Diagnostics of the Laser-Produced Tin Plasma in Air / J.Iqbal, [et al.] // Laser Physics. – 2016. – Vol.26, No.7. – p.076001. - Bibliogr.:41.

http://dx.doi.org/10.1088/1054-660X/26/7/076001

180. Matthaeus, W.H. Ensemble Space-Time Correlation of Plasma Turbulence in the Solar Wind / W.H.Matthaeus, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.245101. - Bibliogr.:44.

http://dx.doi.org/10.1103/PhysRevLett.116.245101

181. Nunez, M. Generation of Sheet Currents by High Frequency Fast MHD Waves / M.Nunez // Physics Letters A. – 2016. – Vol.380, No.29/30. – p.2288-2293. - Bibliogr.:19.

http://dx.doi.org/10.1016/j.physleta.2016.05.010

С 393 и - Высокотемпературная сверхпроводимость. Новые ВТСП

182. Chhajlany, R.W. Hidden String Order in a Hole Superconductor with Extended Correlated Hopping / R.W.Chhajlany, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.22. – p.225303. - Bibliogr.:43.

http://dx.doi.org/10.1103/PhysRevLett.116.225303

С 393 и1 - Структурные исследования

183. Кузьмин, Ю.И. Состояние вихревого стекла, индуцированное крипом вихрей в перколяционных сверхпроводниках / Ю.И.Кузьмин, И.В.Плешаков // Журнал технической физики. Письма. – 2016. – Т.42, №13. – с.9-17. - Библиогр.:16.

http://journals.ioffe.ru/articles/viewPDF/43394

С 413 - Радиохимия

184. Герасько, О.А. Макроциклические кавитанды кукурбит[n]урилы: перспективы применения в биохимии, медицине и нанотехнологиях / О.А.Герасько, [др.] // Успехи химии. – 2016. – Т.85, №8. – с.795-816. - Библиогр.:164.

http://dx.doi.org/10.1070/RCR4595

185. Омельчук, О.А. Методы аннелирования фуранового ядра к аренам / О.А.Омельчук, [др.] // Успехи химии. – 2016. – Т.85, №8. – с.817-835. - Библиогр.:110.

http://dx.doi.org/10.1070/RCR4613

С 45 - Физическая химия

186. Ермаков, С.С. Новые электрохимические сенсоры с электродами на основе мультислоев, синтезированных методом послойной химической сборки, и их аналитические возможности / С.С.Ермаков, [др.] // Успехи химии. – 2016. – Т.85, №8. – с.880-900. - Библиогр.:241.

http://dx.doi.org/10.1070/RCR4605

187. Метревели, А.К. Преобразование твердых и газообразных алканов в жидкие углеводороды при облучении ускоренными электронами / А.К.Метревели, [др.] // Доклады Академии Наук. – 2016. – Т.469, №2. – с.185-189. - Библиогр.:9.

http://dx.doi.org/10.1134/S0012501616070022

С 63 - Астрофизика

188. Abbott, B.P. Properties of the Binary Black Hole Merger GW150914 / B.P.Abbott, [et al.] // Physical Review Letters. – 2016. – Vol.116, No.24. – p.241102. - Bibliogr.:136.

http://dx.doi.org/10.1103/PhysRevLett.116.241102

189. Mukherjee, S. Litmus Test for Cosmic Hemispherical Asymmetry in the Cosmic Microwave Background B-Mode Polarization / S.Mukherjee, T.Souradeep // Physical Review Letters. – 2016. – Vol.116, No.22. – p.221301. - Bibliogr.:25.

http://dx.doi.org/10.1103/PhysRevLett.116.221301

190. Watts, A.L. Measuring the Neutron Star Equation of State Using x-Ray Timing / A.L.Watts, [et al.] // Reviews of Modern Physics. – 2016. – Vol.88, No.2. – p.021001. - Bibliogr.:273.

http://dx.doi.org/10.1103/RevModPhys.88.021001

Ц 732.1 - Квантовомеханические приборы. Молекулярные генераторы и усилители,парамагнитные генераторы и усилители. Лазеры, мазеры и др.Квантовые оптико-электронные приборы. Квантоскопы

191. Zhang, X. The Experimental Study of a CW 1080 nm Multi-Point Pump Fiber Laser / X.Zhang, [et al.] // Laser Physics. – 2016. – Vol.26, No.7. – p.075106. - Bibliogr.:9.

http://dx.doi.org/10.1088/1054-660X/26/7/075106

28.0 - Биология

192. Zhang, B. Shape Transitions and Chiral Symmetry Breaking in the Energy Landscape of the Mitotic Chromosome / B.Zhang, P.G.Wolynes // Physical Review Letters. – 2016. – Vol.116, No.24. – p.248101. - Bibliogr.:36.

http://dx.doi.org/10.1103/PhysRevLett.116.248101

193. Барон, А.В. Адсорбция наноалмазами вирусных частиц из плазмы крови больных вирусными гепатитами / А.В.Барон, [др.] // Доклады Академии Наук. – 2016. – Т.469, №2. – с.235-237. - Библиогр.:8.

http://dx.doi.org/10.1134/S1607672916040037

194. Карпова, Е.К. Мутация гена Chico влияет на развитие нейроэндокринной стресс-реакции у Drosophila / Е.К.Карпова, [др.] // Доклады Академии Наук. – 2016. – Т.469, №2. – с.244-247. - Библиогр.:15.

 

СПИСОК ПРОСМОТРЕННЫХ ЖУРНАЛОВ


1. American Journal of Physics. – 2016. – Vol.84, No.8. – P.569-648.

2. CERN Courier. – 2016. – Vol.56, No.7. – P.1-62.

3. Few-Body Systems. – 2016. – Vol.57, No.7. – P.485-606.

4. Few-Body Systems. – 2016. – Vol.57, No.8. – P.607-728.

5. Journal of Physics A. – 2016. – Vol.49, No.27. – P.27LT01-275501.

6. Journal of Physics: Condensed Matter. – 2016. – Vol.28, No.26. – C.263001-266002.

7. Laser Physics. – 2016. – Vol.26, No.7. – C.075001-076002.

8. Nuclear Instruments & Methods in Physics Research A. – 2016. – Vol.827. – P.1-180.

9. Nuclear Technology & Radiation Protection. – 2016. – Vol.31, No.1. – P.1-109.

10. Physica Scripta. – 2016. – Vol.91, No.7. – C.073001-075201.

11. Physical Review A [Electronic resource]. – 2016. – Vol.94, No.1. – Electronic journal. - Title from the title screen.

12. Physical Review B [Electronic resource]. – 2016. – Vol.94, No.4. – Electronic journal. - Title from the title screen.

13. Physical Review C [Electronic resource]. – 2016. – Vol.94, No.1. – Electronic Journal. - Title from the title screen.

14. Physical Review C [electronic resource]. – 2016. – Vol.94, No.2. – Electronic journal. - Title from the title screen.

15. Physical Review E [Electronic resource]. – 2016. – Vol.94, No.1. – Electronic journal. - Title from the title screen.

16. Physical Review E [Electronic resource]. – 2016. – Vol.94, No.2. – Electronic journal. - Title from the title screen.

17. Physical Review Letters. – 2016. – Vol.116, No.22. – C.220501-229903.

18. Physical Review Letters. – 2016. – Vol.116, No.24. – P.240401-249902.

19. Physics Letters A. – 2016. – Vol.380, No.29/30. – C.2247-2334.

20. Reviews of Modern Physics. – 2016. – Vol.88, No.2. – P.021001-025006.

21. Вопросы атомной науки и техники. Сер. Ядерно-физические исследования = Питання атомноi науки i технiки = Problems of Atomic Science and Technology. Ser. Nuclear Physics Investigations. – 2016. – No.3(103). – P.1-171.

22. Доклады Академии Наук. – 2016. – Т.469, №2. – С.139-263.

23. Журнал вычислительной математики и математической физики. – 2016. – Т.56, №8. – С.1383-1540.

24. Журнал технической физики. Письма. – 2016. – Т.42, №13. – С.1-112.

25. Журнал технической физики. – 2016. – Т.86, №7. – С.1-160.

26. Наносистемы: физика, химия, математика. – 2016. – Т.7, №4. – P.579-779.

27. Успехи химии. – 2016. – Т.85, №8. – С.795-900.