PACS numbers

03.30.+p Special relativity 04.60.−m Quantum gravity 04.65.+e Supergravity 11.10.−z Field theory 11.15.−q Gauge field theories
  1. K.A. Gubarev, E.T. Musaev “Integrability structures in string theory67 219–250 (2024)
    02.30.Ik, 04.65.+e, 11.25.−w (all)
  2. Yu.A. Ageeva, P.K. Petrov “Unitarity relation and unitarity bounds for scalars with different sound speeds66 1134–1141 (2023)
    11.10.−z, 98.80.−k (all)
  3. V.N. Rudenko, S.I. Oreshkin, K.V. Rudenko “Measuring global gravity-inertial effects with ring laser interferometers65 920–951 (2022)
    03.30.+p, 04.20.−q, 06.20.−f, 91.30.−f, 03.75.−b (all)
  4. G.B. Malykin “Application of the modified Duguay method for measuring the Lorentz contraction of a moving body length64 1058–1062 (2021)
    03.30.+p
  5. V.I. Ritus “Generalization of the k coefficient method in relativity to an arbitrary angle between the velocity of an observer (source) and the direction of the light ray from (to) a faraway source (observer) at rest63 601–610 (2020)
    03.30.+p, 42.15.Fr (all)
  6. V.F. Mukhanov “Quantum Universe59 1021–1027 (2016)
    04.60.−m, 98.70.Vc, 98.80.−k (all)
  7. M.I. Vysotskii, A.D. Dolgov, V.A. Novikov “70 years of ITEP: some theoretical results59 787–795 (2016)
    01.65.+g, 11.10.−z, 12.10.−g (all)
  8. P. Maraner “On the phase shift in a uniformly rotating Michelson interferometer (comment on "Quadratic Sagnac effect — the influence of the gravitational potential of the Coriolis force on the phase difference between the arms of a rotating Michelson interferometer (an explanation of D C Miller's experimental results 1921—1926)" by G B Malykin and V I Pozdnyakova [Phys. Usp. 58 398 (2015); Usp. Fiz. Nauk 185 431 (2015)])59 716–718 (2016)
    03.30.+p, 07.60.Ly, 42.87.Bg (all)
  9. G.B. Malykin, V.I. Pozdnyakova “On inconsistencies in the work of P Maraner (reply to comment [Usp. Fiz. Nauk 186 793 2016] to the paper "Quadratic Sagnac effect — the influence of gravitational potential of Coriolis force on the phase difference between the arms of a rotating Michelson interferometer (an explanation of D C Miller's experimental results, 1921—1926)" (Usp. Fiz. Nauk 185 431 (2015) [Phys. Usp. 58 398 (2015)])59 719–721 (2016)
    03.30.+p
  10. V.I. Ritus “Lagrange equations of motion of particles and photons in the Schwarzschild field58 1118–1123 (2015)
    03.30.+p
  11. P. Higgs “Prehistory of the Higgs boson58 (10) (2015)
    01.65.+g, 11.15.−q, 12.15.−y (all)
  12. P.W. Higgs “Evading the Goldstone theorem58 (10) (2015)
    01.30.Bb, 11.15.−q, 12.15.−y (all)
  13. I.M. Khalatnikov, A.Yu. Kamenshchik “Stochastic cosmology, perturbation theories and Lifshitz gravity58 878–891 (2015)
    04.20.−q, 04.60.−m, 98.80.−k (all)
  14. G.B. Malykin, V.I. Pozdnyakova “Supplement to the paper "Quadratic Sagnac effect — the influence of the gravitational potential of the Coriolis force on the phase difference between the arms of a rotating Michelson interferometer (an explanation of D C Miller's experimental results, 1921—1926)" (Usp. Fiz. Nauk 185 431 (2015) [Phys. Usp. 58 398 (2015)])58 828–829 (2015)
    03.30.+p
  15. G.B. Malykin “Sagnac effect in ring lasers and ring resonators. How does the refraction index of the optical medium influence the sensitivity to rotation?57 714–720 (2014)
    03.30.+p, 07.60.−j, 42.60.Da (all)
  16. M.I. Vysotskii, S.I. Godunov “Critical charge in a superstrong magnetic field57 194–198 (2014)
    03.65.Pm, 11.10.−z, 12.20.−m (all)
  17. J. Gaite “The relativistic virial theorem and scale invariance56 919–931 (2013)
    03.30.+p, 11.10.St, 12.38.Aw, 12.39.Ba (all)
  18. V.A. Aleshkevich “On special relativity teaching using modern experimental data55 1214–1231 (2012)
    01.40.gb, 01.65.+g, 03.30.+p (all)
  19. P.B. Ivanov “On relativistic motion of a pair of particles having opposite signs of masses55 1232–1238 (2012)
    03.30.+p, 04.20.−q, 47.75.+f (all)
  20. G.B. Malykin, V.S. Savchuk, E.A. Romanets “Lev Yakovlevich Strum and the hypothesis of the existence of tachyons55 1134–1139 (2012)
    01.65.+g, 03.30.+p (all)
  21. 120th anniversary of the birth of Sergei Ivanovich Vavilov (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 30 March 2011)54 1257–1283 (2011)
    01.10.Fv, 01.65.+g, 01.70.+w, 03.30.+p, 41.60.−m, 42.50.−p, 42.65.−k, 42.70.−a, 78.47.−p, 78.55.−m, 85.60.−q (all)
  22. E.B. Aleksandrov, P.A. Aleksandrov et alDirect experimental demonstration of the second special relativity postulate: the speed of light is independent of the speed of the source54 1272–1278 (2011)
    01.65.+g, 03.30.+p, 41.60.−m (all)
  23. V.P. Makarov, A.A. Rukhadze “Negative group velocity electromagnetic waves and the energy—momentum tensor54 1285–1296 (2011)
    03.30.+p, 03.50.De, 41.20.−q (all)
  24. M.A. Vasiliev “V L Ginzburg and higher-spin fields54 641–648 (2011)
    04.65.+e, 11.10.−z, 11.30.Ly (all)
  25. X.-B. Huang “A rigorous minimum-assumption derivation of the Lorentz transformation54 529–532 (2011)
    01.40.−d, 03.30.+p (all)
  26. V.B. Morozov “On the question of the electromagnetic momentum of a charged body54 371–374 (2011)
    01.65.+g, 03.30.+p, 41.20.−q (all)
  27. G.B. Malykin “Noncommutative nature of the addition of noncollinear velocities in special relativity and the geometric phase method (commemorating the publication centennial of A Sommerfeld’s work)53 923–927 (2010)
    01.65.+g, 03.30.+p, 03.65.Vf (all)
  28. A. Sommerfeld “On the addition of velocities in the theory of relativity53 929–931 (2010)
    01.65.+g, 02.40.Ky, 03.30.+p (all)
  29. L.B. Okun “V A Fock and gauge symmetry53 835–837 (2010)
    01.65.+g, 11.15.−q, 11.30.−j (all)
  30. V.A. Fock “On the invariant form of the wave and motion equations for a charged point mass53 839–841 (2010)
    01.65.+g, 04.20.−q, 11.15.−q (all)
  31. I.B. Khriplovich “Screening and antiscreening of charge in gauge theories53 315–316 (2010)
    11.10.Gh, 11.15.−q, 12.38.−t (all)
  32. V.G. Veselago, V.V. Shchavlev “On the relativistic invariance of the Minkowski and Abraham energy-momentum tensors53 317–318 (2010)
    03.30.+p, 03.50.De (all)
  33. V.P. Makarov, A.A. Rukhadze “Force acting on a substance in an electromagnetic field52 937–943 (2009)
    03.30.+p, 03.50.De, 41.20.−q (all)
  34. M.I. Krivoruchenko “Rotation of the swing plane of Foucault’s pendulum and Thomas spin precession: two sides of one coin52 821–829 (2009)
    01.65.+g, 02.40.Ky, 03.30.+p (all)
  35. I.F. Ginzburg “Unsolved problems in fundamental physics52 495–498 (2009)
    01.70.+w, 11.15.−q, 12.60.−i (all)
  36. G.B. Malykin “Para-Lorentz transformations52 263–266 (2009)
    01.65.+g, 03.30.+p (all)
  37. V.I. Ritus “Permutation asymmetry of the relativistic velocity addition law and non-Euclidean geometry51 709–721 (2008)
    03.30.+p, 02.40.Ky (all)
  38. B.L. Ioffe “Axial anomaly in quantum electro- and chromodynamics and the structure of the vacuum in quantum chromodynamics51 616–622 (2008)
    11.15.−q, 11.30.Qc, 12.38.Aw (all)
  39. L.B. Okun “The theory of relativity and the Pythagorean theorem51 622–631 (2008)
    03.30.+p
  40. L.N. Lipatov “Bjorken and Regge asymptotics of scattering amplitudes in QCD and in supersymmetric gauge models51 631–636 (2008)
    03.30.+p
  41. E. Varoquaux, G. Varoquaux “Sagnac effect in superfluid liquids51 205–208 (2008)
    03.30.+p, 03.75.−b, 42.81.Pa (all)
  42. V.I. Ritus “On the difference between Wigner’s and Møller’s approaches to the description of Thomas precession50 95–101 (2007)
    03.30.+p
  43. A.A. Denisov, E.Sh. Teplitsky “A derivation of the Lorentz transformation based on frequency standards49 831–836 (2006)
    03.30.+p
  44. G.B. Malykin “Thomas precession: correct and incorrect solutions49 837–853 (2006)
    01.65+g, 03.30.+p, 03.65.Vf (all)
  45. A.P. Protogenov “Knots and links in the order parameter distributions of strongly correlated systems49 667–691 (2006)
    02.40.−k, 11.15.−q, 11.27.+d, 74.20.De (all)
  46. N.N. Rozanov, G.B. Sochilin “First-order relativistic effects in the electrodynamics of media moving with a nonuniform velocity49 407–424 (2006)
    03.30.+p, 03.50.De, 41.20.−q, 42.25.−p (all)
  47. A.S. Gorskii “Gauge theories as string theories: the first results48 1093–1108 (2005)
    11.15.−q, 11.25.−w, 11.25.Tq, 11.30.Pb (all)
  48. G.E. Gorelik “Matvei Bronstein and quantum gravity: 70th anniversary of the unsolved problem48 1039–1053 (2005)
    01.65.+g, 03.65.Ta, 04.60.−m (all)
  49. N.V. Kupryaev “Comment on A Lecture Course in Natural Sciences by O E Akimov48 971–973 (2005)
    01.40.−d, 03.30.+p (all)
  50. N.N. Rozanov “Superluminal localized structures of electromagnetic radiation48 167–171 (2005)
    03.30.+p, 41.20.−q (all)
  51. A.V. Shepelev “Cosmic microwave background and the Aristotelian ideas of motion48 95–96 (2005)
    01.55.+b, 03.30.+p (all)
  52. A.I. Musienko, L.I. Manevich “Classical mechanical analogs of relativistic effects47 797–820 (2004)
    03.30.+p, 05.45.Yv, 11.15.−q, 61.72.Lk (all)
  53. G.B. Malykin “On the possibility of experimental verifying the second postulate of special relativity47 739–742 (2004)
    03.30.+p, 06.20.Jr (all)
  54. D.S. Kuz’menko, Yu.A. Simonov, V.I. Shevchenko “Vacuum, confinement, and QCD strings in the vacuum correlator method47 1–15 (2004)
    11.15.−q, 12.38.Aw, 12.38.Lg (all)
  55. S.I. Blinnikov, L.B. Okun, M.I. Vysotskii “Critical velocities c/sqrt{3} and c/sqrt{2} in the general theory of relativity46 1099–1103 (2003)
    03.30.+p, 45.50.−j (all)
  56. V.I. Sanyuk, A.D. Sukhanov “Dirac in 20th century physics: a centenary assessment46 937–956 (2003)
    01.65.+g, 03.65.−w, 11.10.−z (all)
  57. M.A. Vasil’ev “Higher spin gauge theory46 218–223 (2003)
    11.15.−q, 11.25.Tq, 12.60.Jv (all)
  58. A.V. Marshakov “String theory or field theory?45 915–954 (2002)
    11.15.−q, 11.25.−w, 12.20.−m (all)
  59. I.A. Andronova, G.B. Malykin “Physical problems of fiber gyroscopy based on the Sagnac effect45 793–817 (2002)
    03.30.+p, 0.7.60.Vg, 42.81.Pa (all)
  60. G.B. Malykin “Sagnac effect in a rotating frame of reference. Relativistic Zeno paradox45 907–909 (2002)
    03.30.+p, 07.60.Ly, 42.87.Bg (all)
  61. K.G. Selivanov “Counting vacua in supersymmetric Yang-Mills theory45 675–686 (2002)
    02.20.−a, 11.15.−q, 11.30.Pb (all)
  62. E.T. Akhmedov “Correspondence between supersymmetric Yang-Mills and supergravity theories44 955–971 (2001)
    04.65.+e, 11.25.−w, 12.60.Jv (all)
  63. B.L. Voronov “On the International Conference ’Quantization, Gauge Theories, and Strings’44 827–831 (2001)
    01.10.Fv, 11.15.−q, 11.25.−w (all)
  64. B.L. Voronov, V.L. Ginzburg, E.L. Feinberg “International Conference ’Quantization, Gauge Theories, and Strings’ devoted to the memory of Efim Samoilovich Fradkin (Moscow, 5 — 10 June 2000)44 827–831 (2001)
    01.10.Fv, 11.15.−q, 11.25.−w (all)
  65. G.B. Malykin “The Sagnac effect: correct and incorrect explanations43 1229 (2000)
    01.65.+g, 03.30.+p, 07.60.Ly, 42.87.Bg (all)
  66. R.I. Khrapko “What is mass?43 1267–1270 (2000)
    01.40.−d, 03.30.+p (all)
  67. L.B. Okun “Reply to the letter ’What is mass?’ by R I Khrapko43 1270–1275 (2000)
    01.40.−d, 03.30.+p (all)
  68. V.V. Smolyaninov “Spatio-temporal problems of locomotion control43 991–1053 (2000)
    01.70.+w, 02.40.Dr, 03.30.+p, 87.19.St (all)
  69. L.V. Prokhorov “Infrared and collinear divergences in gauge theories42 1099–1120 (1999)
    11.10.−z, 11.15.−q (all)
  70. G.B. Malykin “The relation of Thomas precession to Ishlinskii’s theorem as applied to the rotating image of a relativistically moving body42 505–509 (1999)
    03.30.+p
  71. Yu.I. Hovsepyan “Some notes on the relativistic Doppler effect41 941–944 (1998)
    03.30.+p, 42.25.Bs, 98.62.Py (all)
  72. K.L. Zarembo, Yu.M. Makeenko “An introduction to matrix superstring models41 1–23 (1998)
    02.10.Sp, 11.15.−q, 11.25.−w (all)
  73. V.V. Ragul’skii “An experimental study of the optical isotropy of space40 972–974 (1997)
    12.20.Fv, 11.30.−j, 03.30.+p, 06.30.Gv (all)
  74. E.L. Feinberg “Special theory of relativity: how good-faith delusions come about40 433–435 (1997)
    03.30.+p
  75. A.V. Borisov, A.S. Vshivtsev et alPhotons and leptons in external fields at finite temperature and density40 229–255 (1997)
    05.30.−d, 11.10.−z, 12.15.Lk, 13.15.+g (all)
  76. V.I. Sanyuk “Topology of gauge fields and condensed matter by M Monastyrsky39 203–204 (1996)
    02.20.Nq, 11.15.−q, 60, 01.30.Mm (all)
  77. A.A. Logunov “The theory of the classical gravitational field38 179–193 (1995)
    04.20.−q, 03.30.+p, 02.40.−k, 98.80.−k (all)
  78. A.Yu. Morozov “Erratum: String theory: what is it? [Sov. Phys. Usp. 35, 671-714 (August 1992)]35 (11) 1003–1003 (1992)
    11.25.−w, 12.10.Dm, 11.10.−z (all)
  79. A.Yu. Morozov “String theory: what is it?35 (8) 671–714 (1992)
    11.25.−w, 12.10.Dm, 11.10.−z (all)
  80. B.P. Kosyakov “Radiation in electrodynamics and in Yang-Mills theory35 (2) 135–142 (1992)
    11.15.−q, 12.20.Ds, 12.38.Aw (all)
  81. V.G. Bar’yakhtar, D.V. Volkov et alAleksandr Il’ich Akhiezer (on his eightieth birthday)35 (2) 151–152 (1992)
    01.60.+q, 12.20.−m, 11.10.−z (all)
  82. B.L. Al’tshuler “The scientific works of A. D. Sakharov34 (5) 362–374 (1991)
    52.55.Fa, 28.52.−s, 98.80.Cq, 11.30.Er, 04.60.−m, 11.25.−w (all)
  83. L.V. Prokhorov, S.V. Shabanov “Phase space of mechanical systems with a gauge group34 (2) 108–140 (1991)
    11.15.−q, 11.10.Ef, 12.20.−m, 03.65.Sq, 03.65.Ge (all)
  84. M.B. Menskii “Proceedings of the 5th Marcel Grossmann Conference on General Relativity33 (12) 1078–1079 (1990)
    01.30.Cc, 01.30.Vv, 04.20.−q, 04.60.−m, 98.80.−k (all)
  85. A.S. Losev “Consistent classical supergravity theories33 (8) 677–677 (1990)
    01.30.Vv, 04.65.+e (all)
  86. A.Yu. Zakharov “Models in statistical physics and quantum field theory33 (6) 491–491 (1990)
    01.30.Vv, 64.60.Cn, 64.60.Fr, 11.10.−z, 11.15.Ha, 11.25.−w (all)
  87. I.P. Ipatova, V.I. Kaidanov et alWhat we can learn from ’The Myths of Relativity Theory’33 (4) 310–312 (1990)
    03.30.+p, 03.50.De, 04.20.−q, 01.30.Vv, 01.70.+w (all)
  88. A.A. Abrikosov, V.A. Ambartsumyan et alNikolai Nikolaevich Bogolyubov (on his eightieth birthday)32 1111–1112 (1989)
    01.60.+q, 11.10.−z (all)
  89. O.V. Ogievetskii “Complex differential geometry and supermanifolds in theories of strings and fields32 1116–1116 (1989)
    01.30.Vv, 02.40.Sf, 11.25.Mj, 11.15.−q (all)
  90. A.Yu. Morozov “Current work in string theory32 645–646 (1989)
    01.30.Vv, 11.25.−w, 11.10.Lm, 11.15.−q (all)
  91. M.A. Shifman “Anomalies and low-energy theorems of quantum chromodynamics32 289–309 (1989)
    12.38.Aw, 12.20.Ds, 11.30.Rd, 11.15.−q, 14.70.Dj (all)
  92. I.D. Novikov “Physical properties of a time machine32 282–283 (1989)
    06.30.Ft, 07.10.Pz, 03.30.+p (all)
  93. V.A. Matveev, V.A. Rubakov et alNonconservation of baryon number under extremal conditions31 916–939 (1988)
    11.30.Fs, 14.80.Hv, 11.30.Ly, 12.10.−g, 11.15.−q, 98.80.Cq (all)
  94. L.P. Grishchuk “Gravitational-wave astronomy31 940–954 (1988)
    04.30.Db, 97.60.Gb, 97.80.Gm, 97.30.Qt, 98.80.Es, 04.60.−m (all)
  95. A.A. Logunov, Yu.V. Chugreev “Special theory of relativity and the Sagnac effect31 861–864 (1988)
    03.30.+p
  96. O.D. Chernavskaya, D.S. Chernavskii “Phase transition in quark-gluon plasma and hydrodynamic theory31 263–276 (1988)
    12.38.Bx, 12.39.Ba, 12.38.Aw, 11.15.−q (all)
  97. V.L. Ginzburg, V.P. Frolov “Vacuum in a homogeneous gravitational field and excitation of a uniformly accelerated detector30 1073–1095 (1987)
    04.60.−m, 11.10.−z, 11.15.−q, 03.30.+p, 04.65.+e (all)
  98. A.A. Tseitlin “Unified string theories30 1012–1013 (1987)
    01.30.Vv, 11.25.Hf, 11.30.Pb, 11.15.−q, 12.10.−g (all)
  99. B.V. Medvedev, D.V. Shirkov “P. A. M. Dirac and the formation of the basic ideas of quantum field theory30 791–815 (1987)
    11.10.Gh, 11.15.−q (all)
  100. D.V. Shirkov, D.I. Kazakov “International conference ’Renormgroup-86′30 654–655 (1987)
    01.10.Fv, 11.10.Hi, 11.15.−q, 64.60.Ak, 05.10.Cc (all)
  101. A.I. Nikishov “Quantum electrodynamics of strong fields30 551–552 (1987)
    12.20.−m, 11.15.−q, 13.40.Ks, 13.66.−a (all)
  102. I.V. Andreev “Chromodynamics as a theory of the strong interaction29 971–979 (1986)
    12.38.Aw, 11.30.Ly, 11.10.Gh, 11.10.Jj, 11.15.−q (all)
  103. N.N. Bogolyubov, A.A. Logunov et alErnst Stueckelberg (Obituary)29 896–897 (1986)
    01.60.+q, 11.10.−z (all)
  104. Ya.B. Zel’dovich, L.P. Grishchuk “Gravitation, the general theory of relativity, and alternative theories29 780–787 (1986)
    04.60.−m
  105. Abdus Salam (On his sixtieth birthday)29 722–722 (1986)
    99.10.Np, 14.60.Lm, 11.30.−j, 11.15.−q, 12.15.−y (all)
  106. S.S. Rozhkov “Topology, manifolds, and homotopy: Basic concepts and applications to n-field models29 530–538 (1986)
    02.40.−k, 11.27.+d, 11.15.−q, 61.72.Lk, 61.30.−v, 75.50.−y (all)
  107. M.I. Bashmakov, V.B. Braginskii et alSergei Georgievich Mamaev (Obituary)29 478–479 (1986)
    01.60.+q, 11.10.−z, 12.20.−m (all)
  108. L.E. Gendenshtein, I.V. Krive “Supersymmetry in quantum mechanics28 645–666 (1985)
    03.65.Fd, 04.60.−m, 02.20.Sv, 03.65.Ge, 21.30.Fe, 11.30.Qc (all)
  109. M.I. Vysotskii “Supersymmetric models of elementary particles—the physics for new-generation accelerators?28 667–693 (1985)
    11.30.Pb, 11.30.Qc, 12.15.Lk, 11.30.Ly, 12.10.Dm, 04.65.+e (all)
  110. I.Ya. Aref’eva, I.V. Volovich “Supersymmetry: Kaluza-Klein theory, anomalies, and superstrings28 694–708 (1985)
    04.50.+h, 11.30.Pb, 11.25.Mj, 04.65.+e, 11.30.Ly, 11.30.Rd (all)
  111. A.I. Vainshtein, V.I. Zakharov, M.A. Shifman “Instantons versus supersymmetry28 709–723 (1985)
    11.30.Pb, 11.15.−q, 11.30.Qc, 11.30.Ly, 11.30.Na, 12.38.−t (all)
  112. A.G. Polnarev, M.Yu. Khlopov “Cosmology, primordial black holes, and supermassive particles28 213–232 (1985)
    04.70.Dy, 98.80.Cq, 14.80.Hv, 11.30.Ly, 11.10.−z (all)
  113. V.I. Man’ko, M.A. Markov “Group-theoretical methods in physics28 106–107 (1985)
    02.20.−a, 03.65.Fd, 03.30.+p, 04.20.−q, 11.30.Pb (all)
  114. V.L. Ginzburg, Ya.B. Zeldovich et alEfim Samoilovich Fradkin (on his sixtieth birthday)27 233–234 (1984)
    01.60.+q, 11.15.−q, 04.60.−m (all)
  115. A.I. Vainshtein, V.I. Zakharov et alABC of instantons25 195–215 (1982)
    03.70.+k, 11.10.−z, 12.35.Cn (all)
  116. M.A. Ol’shanetskii “A short guide to modern geometry for physicists25 123–129 (1982)
    02.40.Hw, 02.40.Pc, 11.15.−q (all)
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