PACS numbers

03.70.+k Theory of quantized fields 12.20.−m Quantum electrodynamics 41.60.−m Radiation by moving charges
  1. M.I. Vysotsky, E.V. Zhemchugov “Equivalent photons in proton and ion—ion collisions at the LHC62 (9) (2019)
    12.20.−m, 12.60.−i, 13.60.−r (all)
  2. P.A. Krachkov, A.I. Mil’shtein “An operator derivation of the quasiclassical Green's function61 896–899 (2018)
    12.20.−m, 12.20.Ds (all)
  3. V.S. Malyshevsky “Is it possible to measure the electromagnetic radiation of an instantly started charge?60 1294–1301 (2017)
    03.50.De, 41.60.−m (all)
  4. I.N. Toptygin “Quantum description of a field in macroscopic electrodynamics and photon properties in transparent media60 935–947 (2017)
    12.20.−m, 41.20.Jb, 41.60.Bq (all)
  5. M.Yu. Glyavin, G.G. Denisov et alHigh power terahertz sources for spectroscopy and material diagnostics59 595–604 (2016)
    07.57.−c, 41.60.−m, 84.40.Ik (all)
  6. P.I. Arseev “On the nonequilibrium diagram technique: derivation, some features and applications58 1159–1205 (2015)
    03.70.+k, 05.60.Gg, 11.10.Wx, 72.10.Bg (all)
  7. N.A. Vinokurov, E.B. Levichev “Undulators and wigglers for production of radiation and other applications58 850–871 (2015)
    03.50.De, 07.85.Qe, 41.60.−m (all)
  8. V.M. Kuleshov, V.D. Mur et alCoulomb problem for a Z>Zcr58 785–791 (2015)
    03.65.Pm, 12.20.−m, 73.22.Pr (all)
  9. A.V. Shchagin “Fresnel coefficients for parametric X-ray (Cherenkov) radiation58 819–827 (2015)
    41.20.Jb, 41.60.−m, 42.25.Bs, 61.80.Cb (all)
  10. N.B. Narozhnyi, A.M. Fedotov “Quantum-electrodynamic cascades in intense laser fields58 95–102 (2015)
    12.20.−m, 42.65.Re, 52.65.Rr (all)
  11. V.P. Neznamov, I.I. Safronov “A new method for solving the Z > 137 problem and determining hydrogen-like energy levels57 189–193 (2014)
    03.65.Ge, 03.65.Pm, 12.20.−m (all)
  12. 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)
  13. S.G. Karshenboim “Progress in the accuracy of the fundamental physical constants: 2010 CODATA recommended values56 883–909 (2013)
    06.20.Jr, 12.20.−m, 31.30.J−, 42.50.Xa (all)
  14. V.I. Ritus “Duality of two-dimensional field theory and four-dimensional electrodynamics leading to finite value of the bare charge56 565–589 (2013)
    03.70.+k, 12.20.−m, 41.60.−m (all)
  15. 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)
  16. 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)
  17. M.V. Kuzelev, A.A. Rukhadze “Nonrelativistic quantum theory of stimulated Cherenkov radiation and Compton scattering in a plasma54 375–380 (2011)
    41.60.−m, 52.35.−g, 52.40.Mj (all)
  18. A.I. Nikishov, V.I. Ritus “Gravitational radiation of systems and the role of their force field53 1093–1122 (2010)
    04.20.−q, 04.30.−w, 41.60.−m (all)
  19. D.V. Karlovets “On dual representation in classical electrodynamics53 817–824 (2010)
    41.60.−m, 41.20.−q, 42.25.Fx (all)
  20. V.S. Davydov, V.M. Shabaev, N.N. Kolachevsky “Selected problems in hydrodynamics, quantum electrodynamics, and laser spectroscopy (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 14 May 2008)51 1171–1190 (2008)
    01.10.Fv, 06.20.Jr, 06.30.Ft, 12.20.−m, 12.20.Ds, 12.20.Fv, 32.10.Fn, 32.30.Jc, 31.30.Gs, 31.30.Jv, 42.62.Fi, 43.30.+m, 43.60.+d, 92.10.Vz (all)
  21. V.M. Shabaev “Quantum electrodynamics of heavy ions and atoms: current status and prospects51 1175–1180 (2008)
    12.20.−m, 12.20.Ds, 31.30.Gs, 31.30.Jv (all)
  22. M.V. Kuzelev, A.A. Rukhadze “Spontaneous and stimulated emission induced by an electron, electron bunch, and electron beam in a plasma51 989–1018 (2008)
    41.60.−m, 52.35.−g, 52.40.Mj (all)
  23. I.N. Toptygin, G.D. Fleishman “Eigenmode generation by a given current in anisotropic and gyrotropic media51 363–374 (2008)
    03.50.De, 41.20.Jb, 41.60.−m (all)
  24. V.N. Tsytovich “Polarization effects in a medium: from Vavilov-Cherenkov radiation and transition radiation to dust-particle pairing, or the development of one of V L Ginzburg’s ideas from 1940 to 200650 545–553 (2007)
    01.10.Fv, 41.60.−m, 52.20.−j, 52.27.Lw (all)
  25. S.P. Denisov “Transition radiation: scientific implications and applications in high-energy physics50 377–379 (2007)
    01.10.Fv, 01.65.+g, 29.40.−n, 41.60.−m (all)
  26. V.P. Milant’ev “One hundred years of the photon48 1177–1186 (2005)
    01.65.+g, 12.20.−m, 14.70.Bh (all)
  27. M.L. Ter-Mikhaelyan “High energy electromagnetic processes in amorphous and inhomogeneous media46 1231–1252 (2003)
    34.50.Dy, 41.20.−q, 41.60.−m (all)
  28. A.V. Marshakov “String theory or field theory?45 915–954 (2002)
    11.15.−q, 11.25.−w, 12.20.−m (all)
  29. K.Yu. Platonov, G.D. Fleishman “Transition radiation in media with random inhomogeneities45 235–291 (2002)
    41.60.−m, 52.35.Hr, 95.30.Gv (all)
  30. V.L. Ginzburg “Some remarks on the radiation of charges and multipoles uniformly moving in a medium45 341–344 (2002)
    41.60.−m
  31. M.L. Ter-Mikhaelyan “Electromagnetic radiative processes in periodic media at high energies44 571–596 (2001)
    29.40.Wk, 41.60.−m, 61.80.Fe, 61.85.+p (all)
  32. A.A. Pomeranskii, R.A. Sen’kov, I.B. Khriplovich “Spinning relativistic particles in external fields43 1055–1066 (2000)
    03.65.Pm, 12.20.−m, 04.25.Nx, 97.80.−d (all)
  33. P.S. Isaev, E.A. Mamchur “Conceptual Foundations of Quantum Field Theory43 953–958 (2000)
    01.30.Vv, 01.70.+w, 03.70.+k (all)
  34. B.M. Bolotovskii, E.A. Galst’yan “Diffraction and diffraction radiation43 755–775 (2000)
    41.60.−m, 41.90.+e, 42.25.Fx, 61.14.−x (all)
  35. L.A. Rivlin “Photons in a waveguide (some thought experiments)40 291–303 (1997)
    03.65.Bz, 12.20.−m, 42.50.−p (all)
  36. V.L. Ginzburg “Radiation by uniformly moving sources (Vavilov-Cherenkov effect, transition radiation, and other phenomena)39 973–982 (1996)
    41.60.−m, 41.60.Bq, 41.90.+e (all)
  37. V.A. Bordovitsyn, I.M. Ternov, V.G. Bagrov “Spin light38 1037–1047 (1995)
    41.60.−m
  38. V.N. Tsytovich “Collective effects of plasma particles in bremsstrahlung38 87–108 (1995)
    41.60.−m, 52.20.−j, 52.25.Gj, 52.90.+z (all)
  39. M.I. Krivoruchenko “Transitional currents of spin-1/2 particles37 601–606 (1994)
    03.70.+k, 11.40.−q (all)
  40. O.I. Zav’yalov, D.N. Zubarev et alMikhail Konstantinovich Polivanov (Obituary)35 (7) 623–625 (1992)
    01.60.+q, 12.20.−m, 11.10.Gh (all)
  41. B.M. Bolotovskii, S.N. Stolyarov “Erratum: Radiation from and energy loss by charged particles in moving media [Sov. Phys. Usp. 35, 143-150 (February 1992)]35 (7) 628–628 (1992)
    41.60.−m, 41.20.−q (all)
  42. B.M. Bolotovskii, S.N. Stolyarov “Law of conservation of energy for the electromagnetic field as applied to radiation by moving charged particles35 (3) 248–254 (1992)
    45.20.df, 41.60.−m (all)
  43. B.M. Bolotovskii, S.N. Stolyarov “Radiation from and energy loss by charged particles in moving media35 (2) 143–150 (1992)
    41.60.−m, 41.20.−q (all)
  44. 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)
  45. A.M. Baldin, N.G. Basov et alDmitrii Vladimirovich Skobel’tsyn (Obituary)34 (8) 731–732 (1991)
    01.60.+q, 12.20.−m, 96.50.sd (all)
  46. 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)
  47. G.D. Fleishman “Transition radiation of a relativistic particle moving along a curve34 (1) 86–96 (1991)
    41.60.−m, 52.27.Ny, 52.25.Mq (all)
  48. D.F. Alferov, Yu.A. Bashmakov, P.A. Cherenkov “Radiation from relativistic electrons in a magnetic undulator32 200–227 (1989)
    41.60.−m, 29.20.Lq, 29.20.Dh, 41.75.Ht, 29.27.Hj (all)
  49. Ya.A. Smorodinskii “Some episodes30 823–825 (1987)
    12.20.−m, 03.65.Pm (all)
  50. A.I. Nikishov “Quantum electrodynamics of strong fields30 551–552 (1987)
    12.20.−m, 11.15.−q, 13.40.Ks, 13.66.−a (all)
  51. I.V. Krive, A.S. Rozhavskii “Fractional charge in quantum field theory and solid-state physics30 370–392 (1987)
    11.10.Lm, 11.30.Pb, 11.30.Rd, 12.20.−m, 73.43.Jn (all)
  52. A.A. Migdal “Stochastic quantization of field theory29 389–411 (1986)
    11.15.Ha, 12.38.Gc, 03.70.+k, 12.20.Ds, 05.30.−d (all)
  53. 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)
  54. A.I. Vainshtein, V.I. Zakharov et alABC of instantons25 195–215 (1982)
    03.70.+k, 11.10.−z, 12.35.Cn (all)
  55. A.B. Migdal “Vacuum polarization in strong fields and pion condensation20 879–898 (1977)
    21.65.+f, 03.70.+k (all)
  56. I.Yu. Kobzarev “Henri Poincaré’s St. Louis lecture, and theoretical physics on the eve of the theory of relativity17 584–592 (1975)
    01.10.Fv, 01.65.+g, 04.20.Cv, 95.30.Sf, 95.10.Ce, 12.20.−m (all)
  57. V.L. Ginzburg “Radiation and radiation friction force in uniformly accelerated motion of a Charge12 565–574 (1970)
    41.60.−m
  58. B.M. Bolotovskii, G.V. Voskresenskii “Emission from charged particles in periodic structures11 143–162 (1968)
    41.60.−m, 41.75.Fr, 42.79.Dj (all)
  59. E.L. Feinberg “Cosmic rays and elementary particle physics8 619–627 (1966)
    96.50.sd, 95.30.Cq, 13.75.Gx, 13.15.+g, 12.20.−m, 14.40.Aq (all)
  60. F.G. Bass, V.M. Yakovenko “Theory of radiation from a charge passing through an electrically inhomogeneous medium8 420–444 (1965)
    41.60.−m
  61. V.B. Berestetskii “The dynamical properties of elementary particles and the theory5 7–36 (1962)
    11.55.−m, 13.40.Gp, 11.30.Er, 12.20.−m, 11.10.−z (all)
  62. A.P. Potylitsyn, D.Yu. Sergeeva et alDiffraction radiation from a charge as radiation from superluminal source in vacuum”, accepted
    41.60.−m, 42.25.−p, 42.25.Kb (all)
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