С 323 Квантовая механика/ Quantum Mechanics

 

58. Acharya, S. Measurement of K&sup(* )(892)&sup(*() Production in Inelastic pp Collisions at the LHC / S.Acharya, B.Batyunya, C.Ceballos Sanchez, S.Grigoryan, A.Kondratyev, L.Malinina, K.Mikhaylov, P.Nomokonov, V.Pozdniakov, E.Rogochaya, B.Rumyantsev, A.Vodopyanov [et al.] // Physics Letters B [Electronic resource]. – 2022. – Vol.828. – P.137013. – Bibliogr.:42.
https://doi.org/10.1016/j.physletb.2022.137013

59. Alexeev, G.D. Probing Transversity by Measuring *L Polarisation in SIDIS / G.D.Alexeev, V.Anosov, K.Augsten, I.Denisenko, A.Efremov, V.Frolov, O.P.Gavrichtchouk, A.Gridin, A.Guskov, A.Ivanov, Yu.Kisselev, O.M.Kouznetsov, A.Maltsev, G.V.Meshcheryakov, E.Mitrofanov, A.Nagaytsev, A.G.Olshevsky, B.Parsamyan, D.V.Peshekhonov, A.Rymbekova, I.A.Savin, A.Selyunin, M.Slunecka, J.Smolik, P.Zavada, E.Zemlyanichkina [et al.] // Physics Letters B [Electronic resource]. – 2022. – Vol.824. – P.136834. – Bibliogr.:53.
https://doi.org/10.1016/j.physletb.2021.136834

60. Amer, A.H. Double Folding Analysis of *a + *1*2C Elastic Scattering Using Different Effective Interactions / A.H.Amer, Z.M.M.Mahmoud, Yu.E.Penionzhkevich // Nuclear Physics A [Electronic resource]. – 2022. – Vol.1020. – P.122398. – Bibliogr.:27.
https://doi.org/10.1016/j.nuclphysa.2022.122398

61. Amer, A.H. Optical Model and Coupled Reaction Channels Analyses of the *9Be+*1*2C Elastic Scattering / A.H.Amer, Z.M.M.Mahmoud, Yu.E.Penionzhkevich // Nuclear Physics A [Electronic resource]. – 2022. – Vol.1028. – P.122525. – Bibliogr.:32.
https://doi.org/10.1016/j.nuclphysa.2022.122525

62. Andreev, V. Measurement of Lepton-Jet Correlation in Deep-Inelastic Scattering with the H1 Detector Using Machine Learning for Unfolding / V.Andreev, M.Kapichine, A.Morozov, V.Spaskov, [a.o.] // Physical Review Letters [Electronic resource]. – 2022. – Vol.128, No.13. – P.132002. – Bibliogr.:151.
https://doi.org/10.1103/physrevlett.128.132002

63. Anikin, I.V. Alignment Function as a New Kind of Transverse Momentum Dependent Functions / I.V.Anikin, L.Szymanowski // The European Physical Journal A [Electronic resource]. – 2022. – Vol.58, No.8. – P.160. – Bibliogr.:13.
https://doi.org/10.1140/epja/s10050-022-00794-8

64. Arbuzov, A.B. Electroweak Effects in Polarized Muon-Electron Scattering / A.B.Arbuzov, S.G.Bondarenko, L.V.Kalinovskaya, L.A.Rumyantsev, V.L.Yermolchyk // Physical Review D [Electronic resource]. – 2022. – Vol.105, No.3. – P.033009. – Bibliogr.:48.
https://doi.org/10.1103/physrevd.105.033009

65. Astrakhantsev, N. Electromagnetic Conductivity of Quark-Gluon Plasma at Non-Zero Baryon Density / N.Astrakhantsev, V.V.Braguta, [a.o.] // The 38th International Symposium on Lattice Field Theory (LATTICE2021), 26-30 July 2021 [Electronic resource] : [Zoom/Gather@Massachusetts Institute of Technology]. – Trieste : SISSA, 2022. – P.119. – Bibliogr.:14. – (Proceedings of Science ; Vol.396).
https://pos.sissa.it/396/119/pdf

66. Bezuglov, M.A. Non-Planar Elliptic Vertex / M.A.Bezuglov, A.I.Onishchenko // Journal of High Energy Physics [Electronic resource]. – 2022. – Vol.2022, No.4. – P.045. – Bibliogr.:90.
https://doi.org/10.1007/jhep04(2022)045

67. Buchbinder, I.L. Light-Front Description of Infinite Spin Fields in Six-Dimensional Minkowski Space / I.L.Buchbinder, S.A.Fedoruk, A.P.Isaev // The European Physical Journal C [Electronic resource]. – 2022. – Vol.82, No.8. – P.733. – Bibliogr.:48.
https://doi.org/10.1140/epjc/s10052-022-10697-z

68. Chernyshev, A.A. Single and Pair J/*q Production in the Improved Color Evaporation Model Using the Parton Reggeization Approach / A.A.Chernyshev, V.A.Saleev // Physical Review D [Electronic resource]. – 2022. – Vol.106, No.11. – P.114006. – Bibliogr.:60.
https://doi.org/10.1103/physrevd.106.114006

69. Das, S.K. Dynamics of Hot QCD Matter - Current Status and Developments / S.K.Das, S.P.Rode, [a.o.] // International Journal of Modern Physics E [Electronic resource]. – 2022. – Vol.31, No.12. – P.2250097. – Bibliogr.:319.
https://doi.org/10.1142/s0218301322500975

70. Ferreira, L.A. Quasi-Self-Dual Skyrme Model / L.A.Ferreira, L.R.Livramento // Physical Review D [Electronic resource]. – 2022. – Vol.106, No.4. – P.045003. – Bibliogr.:21.
https://doi.org/10.1103/physrevd.106.045003

71. Gani, V.A. Remarks on Sine-Gordon Kink-Fermion System: Localized Modes and Scattering / V.A.Gani, A.Gorina, I.Perapechka, Ya.Shnir // The European Physical Journal C [Electronic resource]. – 2022. – Vol.82, No.8. – P.757. – Bibliogr.:67.
https://doi.org/10.1140/epjc/s10052-022-10707-0

72. Goloskokov, S.V. Exclusive *p*0 Production at EIC of China within Handbag Approach / S.V.Goloskokov, Y.-P.Xie, X.Chen // Chinese Physics C [Electronic resource]. – 2022. – Vol.46, No.12. – P.123101. – Bibliogr.:34.
https://doi.org/10.1088/1674-1137/ac878c

73. Golubtsova, A.A. Heavy Quarks in Rotating Plasma Via Holography / A.A.Golubtsova, E.Gourgoulhon, M.K.Usova // Nuclear Physics B [Electronic resource]. – 2022. – Vol.979. – P.115786. – Bibliogr.:60.
https://doi.org/10.1016/j.nuclphysb.2022.115786

74. Gridin, A. Study of Double J/*q Production Mechanisms at COMPASS / A.Gridin // International Journal of Modern Physics A [Electronic resource]. – 2022. – Vol.37, No.33. – P.2240002. – Bibliogr.:36.
https://doi.org/10.1142/s0217751x22400024

75. Hashamipour, H. Determination of the Generalized Parton Distributions Through the Analysis of the World Electron Scattering Data Considering Two-Photon Exchange Corrections / H.Hashamipour, M.Goharipour, K.Azizi, S.V.Goloskokov // Physical Review D [Electronic resource]. – 2022. – Vol.105, No.5. – P.054002. – Bibliogr.:59.
https://doi.org/10.1103/physrevd.105.054002

76. Hussein, A. Analytical Calculations of the Quantum Tsallis Thermodynamic Variables / A.Hussein, T.Bhattacharyya // Physics [Electronic resource]. – 2022. – Vol.4, No.3. – P.800-811. – Bibliogr.:56.
https://doi.org/10.3390/physics4030051

77. Ivanov, M.A. Erratum : Theoretical Analysis of the Leptonic Decays B*>lll'*n^- &sub(l') [Phys. Rev. D 105, 014028 (2022)] / M.A.Ivanov, D.Melikhov // Physical Review D [Electronic resource]. – 2022. – Vol.106, No.11. – P.119901. – Bibliogr.:2.
https://doi.org/10.1103/physrevd.106.119901

78. Ivanov, M.A. Theoretical Analysis of the Leptonic Decays B *> lll*n^- &sub(l): Identical Leptons in the Final State / M.A.Ivanov, D.Melikhov // Physical Review D [Electronic resource]. – 2022. – Vol.105, No.9. – P.094038. – Bibliogr.:33.
https://doi.org/10.1103/physrevd.105.094038

79. Ivanov, M.A. Theoretical Analysis of the Leptonic Decays B*>lll'*n^- &sub(l') / M.A.Ivanov, D.Melikhov // Physical Review D [Electronic resource]. – 2022. – Vol.105, No.1. – P.014028. – Bibliogr.:39.
https://doi.org/10.1103/physrevd.105.014028

80. Kartavtsev, O.I. Minlos-Faddeev Regularization of Zero-Range Interactions in the Three-Body Problem / O.I.Kartavtsev, A.V.Malykh // Журнал экспериментальной и теоретической физики. Письма. – 2022. – Т.116, №3/4. – P.179-180. – Bibliogr.:10.
http://jetpletters.ru/ps/2382/article_35215.pdf

81. Khastyan, E. Kahler Geometry for su(1, N|M) Superconformal Mechanics / E.Khastyan, S.Krivonos, A.Nersessian // Physical Review D [Electronic resource]. – 2022. – Vol.105, No.2. – P.025007. – Bibliogr.:22.
https://doi.org/10.1103/physrevd.105.025007

82. Korobov, V.I. Precision Spectroscopy of the Hydrogen Molecular Ions: Present Status of Theory and Experiment : [Abstract] / V.I.Korobov // Физика элементарных частиц и атомного ядра. – 2022. – Т.53, №4. – P.892.
http://www1.jinr.ru/pepan/v-53-4/02_ann.pdf

83. Kotikov, A.V. *a&sub(s) in DIS Scheme / A.V.Kotikov, V.G.Krivokhizhin, B.G.Shaikhatdenov // Журнал экспериментальной и теоретической физики. Письма. – 2022. – Т.115, №7/8. – P.467-468. – Bibliogr.:7.
http://www.jetpletters.ru/ps/2371/article_35084.pdf

84. Liashyk, A. On the R-Matrix Realization of Quantum Loop Algebras / A.Liashyk, S.Z.Pakuliak // SciPost Physics [Electronic resource]. – 2022. – Vol.12, No.5. – P.146. – Bibliogr.:24.
https://doi.org/10.21468/scipostphys.12.5.146

85. Livramento, L.R. False Vacuum Skyrmions Revisited / L.R.Livramento, Ya.Shnir // Physical Review D [Electronic resource]. – 2022. – Vol.105, No.12. – P.125019. – Bibliogr.:64.
https://doi.org/10.1103/physrevd.105.125019

86. Melikhov, D. Nonfactorizable Charming Loops in FCNC B Decays Versus B-Decay Semileptonic Form Factors / D.Melikhov // Physical Review D [Electronic resource]. – 2022. – Vol.106, No.5. – P.054022. – Bibliogr.:27.
https://doi.org/10.1103/physrevd.106.054022

87. Mukhanov, V.F. Instantons: Thick-Wall Approximation / V.F.Mukhanov, A.S.Sorin // Journal of High Energy Physics [Electronic resource]. – 2022. – Vol.2022, No.7. – P.147. – Bibliogr.:7.
https://doi.org/10.1007/jhep07(2022)147

88. Nesterenko, A.V. Timelike and Spacelike Kernel Functions for the Hadronic Vacuum Polarization Contribution to the Muon Anomalous Magnetic Moment / A.V.Nesterenko // Journal of Physics G [Electronic resource]. – 2022. – Vol.49, No.5. – P.055001. – Bibliogr.:75.
https://doi.org/10.1088/1361-6471/ac5d0a

89. Perepelkin, E.E. The Wigner Function Negative Value Domains and Energy Function Poles of the Polynomial Oscillator / E.E.Perepelkin, B.I.Sadovnikov, N.G.Inozemtseva [et al.] // Physica A [Electronic resource]. – 2022. – Vol.598. – P.127339. – Bibliogr.:21.
https://doi.org/10.1016/j.physa.2022.127339

90. Pikelner, A. Four-Loop Critical Properties of Polymerized Membranes / A.Pikelner // EPL: A Letters Journal Exploring the Frontiers of Physics [Electronic resource]. – 2022. – Vol.138, No.1. – P.17002.
https://doi.org/10.1209/0295-5075/ac6441

91. Prokhorov, G.Yu. Hydrodynamic Manifestations of Gravitational Chiral Anomaly / G.Yu.Prokhorov, O.V.Teryaev, V.I.Zakharov // Physical Review Letters [Electronic resource]. – 2022. – Vol.129, No.15. – P.151601. – Bibliogr.:40.
https://doi.org/10.1103/physrevlett.129.151601

92. Sarwar, G. Nonlinear Waves in a Hot, Viscous and Non-Extensive Quark-Gluon Plasma / G.Sarwar, T.Bhattacharyya, [a.o.] // The European Physical Journal C [Electronic resource]. – 2022. – Vol.82, No.3. – P.189. – Bibliogr.:89.
https://doi.org/10.1140/epjc/s10052-022-10122-5

93. Silenko, A.J. Relativistic Spin Dynamics Conditioned by Dark Matter Axions / A.J.Silenko // The European Physical Journal C [Electronic resource]. – 2022. – Vol.82, No.10. – P.856. – Bibliogr.:81.
https://doi.org/10.1140/epjc/s10052-022-10827-7

94. Silenko, A.J. Zitterbewegung of Massless Particles / A.J.Silenko // Physical Review A [Electronic resource]. – 2022. – Vol.105, No.6. – P.062211. – Bibliogr.:96.
https://doi.org/10.1103/physreva.105.062211

95. Teryaev, O. Velocity-Like Maximum Polarization: Irreversibility and Quantum Measurements / O.Teryaev // Physical Review C [Electronic resource]. – 2022. – Vol.106, No.1. – P.L012201. – Bibliogr.:42.
https://doi.org/10.1103/physrevc.106.l012201

96. Urazbekov, B.A. Probing the *6Li Cluster Structure with Alpha-Particle Elastic Scattering / B.A.Urazbekov, A.S.Denikin // Eurasian Journal of Physics and Functional Materials [Electronic resource]. – 2022. – Vol.6, No.2. – P.101-108. – Bibliogr.:20.
https://doi.org/10.32523/ejpfm.2022060201

97. Yukalov, V.I. Quantum Uncertainty in Decision Theory / V.I.Yukalov // Financial Econometrics: Bayesian Analysis, Quantum Uncertainty, and Related Topics [Electronic resource] : Conference Proceedings, Ho Chi Minh, Vietnam, 10-12 January 2022 / Ed.: Nguyen Ngoc Thach, V.Kreinovich, Doan Thanh Ha, Nguyen Duc Trung. – Cham : Springer, 2022. – P.201-218. – Bibliogr.:p.217-218. – (Studies in Systems, Decision and Control ; Vol.427).
https://doi.org/10.1007/978-3-030-98689-6_13

98. Yukalov, V.I. Role of Collective Information in Networks of Quantum Operating Agents / V.I.Yukalov, E.P.Yukalova, D.Sornette // Physica A [Electronic resource]. – 2022. – Vol.598. – P.127365. – Bibliogr.:85.
https://doi.org/10.1016/j.physa.2022.127365

99. Бондаренко, С.Г. Однопетлевые электрослабые радиационные поправки к поляризованному меллеровскому рассеянию / С.Г.Бондаренко, Л.В.Калиновская, Л.А.Румянцев, В.Л.Ермольчик // Журнал экспериментальной и теоретической физики. Письма. – 2022. – Т.115, №9/10. – С.547-553. - Библиогр.:49.
http://jetpletters.ru/ps/2372/article_35096.pdf

100. Киреев, Виктор Александрович. Изучение процессов рождения адронов, образования ядер и гиперядер в столкновениях тяжелых ионов в модели PHQMD : автореф. дис... канд. физ.-мат. наук: 1.3.15 / Виктор Александрович Киреев. – Дубна : ОИЯИ, 2022. – 25 с. : ил. - Библиогр.: с. 22-25.
http://inis.jinr.ru/sl/ntblib/aft-kireevva-2022.pdf

101. Коробов, В.И. Вариационные методы в квантовой задаче трех тел с кулоновским взаимодействием / В.И.Коробов // Физика элементарных частиц и атомного ядра. – 2022. – Т.53, №1. – С.5-42. - Библиогр.:78.
http://www1.jinr.ru/pepan/v-53-1/01_korob.pdf

102. Ладыгин, В.П. Угловые зависимости дейтронных анализирующих способностей в dp-упругом рассеянии при больших поперечных импульсах / В.П.Ладыгин, А.В.Аверьянов, Е.В.Черных, Д.Еначе, Ю.В.Гурчин, А.Ю.Исупов, М.Янек, Ю.Т.Карачук, А.Н.Хренов, Д.О.Кривенков, П.К.Курилкин, Н.Б.Ладыгина, А.Н.Ливанов, С.М.Пиядин, С.Г.Резников, А.А.Терехин, А.В.Тишевский, Т.Уесака, И.С.Волков // Физика элементарных частиц и атомного ядра. – 2022. – Т.53, №2. – С.232-239. - Библиогр.:13.
http://www1.jinr.ru/pepan/v-53-2/26_ladygin.pdf

103. Парван, Александру. Статистическое описание релятивистских адронных систем в столкновениях протонов с протонами и тяжелых ионов : автореф. дис... д-ра физ.-мат. наук: 1.3.15 / Александру Парван. – Дубна : ОИЯИ, 2022. – 69 с. : Библиогр.: с. 53-69.
http://inis.jinr.ru/sl/ntblib/aft-parvana-2022.pdf

104. Салеев, В.А. Глюонная функция Сиверса в односпиновых поперечных асимметриях прямых фотонов на коллайдере NICA / В.А.Салеев, А.В.Шипилова // Ядерная физика. – 2022. – Т.85, №6. – С.490-500. - Библиогр.:62.
https://doi.org/10.31857/s0044002722060113