PACS numbers

41.20.Jb Electromagnetic wave propagation; radiowave propagation 41.60.Cr Free-electron lasers 42.25.Ja Polarization 52.35.Mw Nonlinear phenomena: waves, wave propagation, and other interactions (including parametric effects, mode coupling, ponderomotive effects, etc.) 52.59.−f Intense particle beams and radiation sources 84.40.Ik Masers; gyrotrons (cyclotron-resonance masers) 87.10.+e General theory and mathematical aspects 94.20.−y Physics of the ionosphere 96.50.S− Cosmic rays 98.70.Sa Cosmic rays
  1. A.M. Bykov “Sources of high-energy cosmic radiation67 (4) (2024)
    95.30.−k, 98.70.Rz, 98.70.Sa (all)
  2. N.N. Rosanov “Unipolar pulse of an electromagnetic field with uniform motion of a charge in a vacuum66 1059–1064 (2023)
    41.20.Jb, 41.75.Ht, 42.65.Re (all)
  3. Yu.V. Bogomolov, V.V. Alekseev et alReview of unfolding methods66 628–642 (2023)
    02.50.−r, 02.60.−x, 96.50.S−, 96.50.sb (all)
  4. V.V. Uchaikin, A.D. Erlykin, R.T. Sibatov “Nonlocal (fractional-differential) model of cosmic ray transport in the interstellar medium66 221–262 (2023)
    02.50.−r, 05.40.Fb, 98.70.Sa (all)
  5. A.S. Lidvansky “A E Chudakov as scientific pioneer65 969–979 (2022)
    01.60.+q, 01.65.+g, 96.50.S− (all)
  6. Yu.V. Stenkin “The LHAASO project: first results and prospects65 980–985 (2022)
    96.50.S−, 96.50.sd, 98.70.Sa (all)
  7. Yu.I. Stozhkov, V.S. Ìàkhmutov, N.S. Svirzhevsky “Balloon studies of cosmic rays at the Lebedev Physical Institute, RAS65 986–994 (2022)
    96.50.S−, 96.50.Xy, 96.60.lv (all)
  8. M.I. Panasyuk, L.I. Miroshnichenko “Particle acceleration in space: a universal mechanism?65 379–405 (2022)
    26.40.+r, 96.50.Vg, 98.70.Sa (all)
  9. K.V. Zhukovsky “Undulator and free-electron laser radiation with field harmonics and off-axis effects taken into account analytically64 304–316 (2021)
    41.60.−m, 41.60.Ap, 41.60.Cr (all)
  10. E.Z. Gusakov, A.Yu. Popov “Scattering theory of strongly refracting microwaves in turbulent inhomogeneous plasma. Applications of the theory to the description of fluctuation reflectometry in thermonuclear fusion devices63 1114–1139 (2020)
    52.35.Hr, 52.35.Mw, 52.70.−m (all)
  11. A.I. Frank “Interaction of a wave with an accelerating object and the equivalence principle63 500–502 (2020)
    03.75.Be, 41.20.Jb (all)
  12. E.Z. Gusakov, A.Yu. Popov “Low-power-threshold parametric decay instabilities of powerful microwave beams in toroidal fusion devices63 365–387 (2020)
    52.35.Hr, 52.35.Mw, 52.35.Qz (all)
  13. V.P. Makarov, A.A. Rukhadze “Material equations and Maxwell equations for isotropic media; waves with negative group velocity and negative values of ε (ω) and μ (ω)62 487–495 (2019)
    03.50.De, 41.20.Jb (all)
  14. D.B. Abramenko, P.S. Antsiferov et alPlasma-based sources of extreme ultraviolet radiation for lithography and mask inspection62 304–314 (2019)
    42.82.Cr, 52.25.Os, 52.59.−f, 52.70.−m, 52.77.−j (all)
  15. M.I. Panasyuk “Greisen—Zatsepin—Kuzmin effect: top—down and bottom—up view61 903–911 (2018)
    98.70.Sa
  16. A.M. Bykov “Astrophysical objects with extreme energy release: observations and theory61 805–818 (2018)
    95.30.−k, 97.60.Bw, 98.70.Sa (all)
  17. N.A. Vinokurov, O.A. Shevchenko “Free electron lasers and their development at the Budker Institute of Nuclear Physics, SB RAS61 435–448 (2018)
    41.60.Cr
  18. B.A. Knyazev, V.G. Serbo “Beams of photons with nonzero orbital angular momentum projection: new results61 449–479 (2018)
    32.80.−t, 41.60.Cr, 42.79.−e (all)
  19. Yu.A. Spirichev “On choosing the energy—momentum tensor in electrodynamics and on the Abraham force61 303–306 (2018)
    03.50.De, 41.20.Jb (all)
  20. 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)
  21. N.N. Rosanov “Antilaser: resonance absorption mode or coherent perfect absorption?60 818–821 (2017)
    03.65.Ca, 41.20.Jb, 42.79.−e (all)
  22. I.V. Galaktionov “Search for antimatter and dark matter, precision studies of the cosmic rays fluxes on the international space station. AMS experiment. Results of four year exposure60 40–57 (2017)
    13.85.Tp, 14.60.−z, 29.30.−h, 75.50.Ww, 95.30.−k, 95.55.−n, 96.50.S−, 97.60.−s, 98.58.Mj, 98.70.Sa (all)
  23. G.B. Malykin “V.L. Ginzburg's helical elliptic polarization modes and their application59 1245–1248 (2016)
    01.65.+g, 41.20.Jb, 42.25.Lc (all)
  24. S.M. Grach, E.N. Sergeev et alDynamic properties of ionospheric plasma turbulence driven by high-power high-frequency radiowaves59 1091–1128 (2016)
    52.25.Os, 52.35.Mw, 52.35.Ra, 52.50.Qt, 94.20.Tt (all)
  25. 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)
  26. 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)
  27. A.D. Filonenko “Radio emission of extensive air showers58 633–669 (2015)
    95.55.Vj, 98.70.Sa (all)
  28. A.A. Petrukhin “Cherenkov water detector NEVOD58 486–494 (2015)
    29.40.Ka, 95.55.Vj, 96.50.S− (all)
  29. A.V. Shchelokova, I.V. Melchakova et alExperimental realization of invisibility cloaking58 167–190 (2015)
    41.20.Jb, 42.25.Bs, 42.30.Wb, 43.20.Gp (all)
  30. A.A. Zyablovsky, A.P. Vinogradov et alPT-symmetry in optics57 1063–1082 (2014)
    03.65.Ca, 41.20.Jb, 42.79.−e (all)
  31. V.V. Uchaikin “Fractional phenomenology of cosmic ray anomalous diffusion56 1074–1119 (2013)
    02.50.−r, 05.40.−a, 98.70.Sa (all)
  32. A.D. Pryamikov, A.S. Biriukov “Excitation of cyclical Sommerfeld waves and Wood’s anomalies in plane wave scattering from a dielectric cylinder at oblique incidence56 813–822 (2013)
    41.20.Jb, 42.25.Bs, 42.25.Fx (all)
  33. S.V. Bulanov, T.Zh. Esirkepov et alRelativistic mirrors in plasmas — novel results and perspectives56 429–464 (2013)
    52.35.Mw, 52.38.Ph, 52.59.Ye (all)
  34. 120 anniversary of the birth of Academician D V Skobel’tsyn (Joint meeting of the scientific session of the Physical Sciences Division of the Russian Academy of Sciences and the Research Councils of the P N Lebedev Physical Institute of the Russian Academy of Sciences and of the D V Skobel’tsyn Institute of Nuclear Physics of M V Lomonosov Moscow State University, 28 November 2012)56 401–422 (2013)
    01.10.Fv, 01.60.+q, 01.65.+g, 25.10.+s, 41.60.Ap, 41.60.Cr, 98.70.Sa (all)
  35. G.A. Mesyats “Academician D V Skobel’tsyn and LPI56 401–404 (2013)
    01.60.+q, 01.65.+g, 98.70.Sa (all)
  36. V.A. Sadovnichy “Academician D V Skobel’tsyn and Moscow University56 404–406 (2013)
    01.60.+q, 01.65.+g, 98.70.Sa (all)
  37. V.V. Mikhailin “Synchrotron and undulator radiations and their applications in spectroscopy56 412–417 (2013)
    01.65.+g, 41.60.Ap, 41.60.Cr (all)
  38. I.N. Toptygin “The Petersburg period in the life and scientific work of D V Skobel’tsyn56 417–422 (2013)
    01.60.+q, 01.65.+g, 98.70.Sa (all)
  39. O.G. Ryazhskaya “On experiments in Underground Physics56 296–304 (2013)
    01.65.+g, 26.65.+t, 98.70.Sa (all)
  40. S.V. Troitsky “Cosmic particles with energies above 1019 eV: a brief summary of results56 304–310 (2013)
    95.55.Vj, 95.85.Ry, 98.70.Sa (all)
  41. E.H. Lock “Angular beam width of a slit-diffracted wave with noncollinear group and phase velocities55 1239–1254 (2012)
    41.20.Gz, 41.20.Jb, 42.25.Fx, 75.70.−i (all)
  42. A.V. Dorofeenko, A.A. Zyablovsky et alLight propagation in composite materials with gain layers55 1080–1097 (2012)
    41.20.Jb, 42.70.Qs, 73.20.−r (all)
  43. A.V. Kukushkin, A.A. Rukhadze, K.Z. Rukhadze “On the existence conditions for a fast surface wave55 1124–1133 (2012)
    41.20.Jb, 78.68.+m (all)
  44. A.D. Filonenko “Radioastronomical measurement of ultrahigh-energy cosmic particle fluxes55 741–772 (2012)
    95.55.Vj, 95.85.Bh, 96.50.S− (all)
  45. F.V. Ignaovich, V.K. Ignatovich “Optics of anisotropic media55 709–720 (2012)
    41.20.Jb, 42.25.−p, 78.20.Fm (all)
  46. A.E. Dubinov, L.A. Mytareva “Is singularity-free cloaking possible? New cloaking ideas (a reply to comments on the paper “Invisible cloaking of material bodies using the wave flow method” [Phys. Usp. 53 455 (2010)])55 315–318 (2012)
    41.20.Jb, 42.25.Bs, 42.30.Wb, 43.20.Gp (all)
  47. A.G. Shalashov, E.D. Gospodchikov “Structure of the Maxwell equations in the region of linear coupling of electromagnetic waves in weakly inhomogeneous anisotropic and gyrotropic media55 147–160 (2012)
    41.20.Jb, 42.25.Bs, 52.35.Hr (all)
  48. Electromagnetic and acoustic waves in metamaterials and structures (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 24 February 2011)54 1161–1192 (2011)
    01.10.Fv, 03.65.Xp, 41.20.Jb, 42.25.−p, 43.20.+g, 43.20.Dk, 43.20.Fn, 43.25.+y, 43.30.+m, 43.60.−c, 43.60.Pt, 78.20.Ci, 78.67.−n, 81.05.Xi, 81.05.Zx, 87.50.Y (all)
  49. V.G. Veselago “Waves in metamaterials: their role in modern physics54 1161–1165 (2011)
    41.20.Jb, 42.25.−p, 81.05.Xi (all)
  50. V.L. Bratman, A.G. Litvak, E.V. Suvorov “Mastering the terahertz domain: sources and applications54 837–844 (2011)
    07.57.−c, 42.62.−b, 84.40.Ik (all)
  51. Celebrating 50 years of the laser (Scientific session of the General Meeting of the Physical Sciences Division of the Russian Academy of Sciences, 13 December 2010)54 837–870 (2011)
    01.10.Fv, 03.75.−b, 07.57.−c, 32.30.Jc, 37.10.−x, 37.10.De, 37.10.Gh, 42.62.−b, 42.65.−k, 42.70.−a, 42.82.−m, 67.85.−d, 78.67.−n, 85.40.−e, 84.40.Ik (all)
  52. N.N. Rozanov “Can even monochromatic radiation ensure ideal invisibility?54 763–764 (2011)
    41.20.Jb, 42.25.Bs (all)
  53. A.V. Vashkovsky, E.H. Lock “On the relationship between magnetostatic wave energy and dispersion characteristics in ferrite structures54 281–290 (2011)
    41.20.Gz, 41.20.Jb, 75.70.−i (all)
  54. A.G. Shalashov, E.D. Gospodchikov “Impedance technique for modeling of electromagnetic wave propagation in anisotropic and gyrotropic media54 145–165 (2011)
    03.50.De, 41.20.Jb, 52.35.−g (all)
  55. V.A. Sadovnichy “S N Vernov as a Moscow University scientist54 185–189 (2011)
    01.60.+q, 07.87.+v, 94.20.−y (all)
  56. E.G. Berezhko, G.F. Krymsky “S N Vernov and cosmic ray research in Yakutia54 215–220 (2011)
    01.65.+g, 94.20.wq, 96.50.S− (all)
  57. G.A. Gusev, B.N. Lomonosov et alIce satellites of planets of the Solar System and the on-orbit radio detection of ultrahigh-energy particles53 915–921 (2010)
    95.55.Vj, 95.85.Ry, 96.50.S− (all)
  58. V.S. Ptuskin “The origin of cosmic rays53 958–961 (2010)
    96.50.S−, 97.60.Bw, 98.62.Nx (all)
  59. K.V. Ptitsyna, S.V. Troitsky “Physical conditions in potential accelerators of ultrahigh energy cosmic rays: updated Hillas plot and radiation-loss constraints53 691–701 (2010)
    98.54.−h, 98.62.En, 98.70.Sa (all)
  60. G.A. Markov, A.S. Belov “Demonstration of nonlinear wave phenomena in the plasma of a laboratory model of an ionospheric-magnetospheric density duct53 703–712 (2010)
    01.50.Pa, 52.35.−g, 94.20.−y (all)
  61. M.V. Davidovich “On energy and momentum conservation laws for an electromagnetic field in a medium or at diffraction on a conducting plate53 595–609 (2010)
    03.50.De, 41.20.Jb, 42.25.Fx (all)
  62. A.E. Dubinov, L.A. Mytareva “Invisible cloaking of material bodies using the wave flow method53 455–479 (2010)
    41.20.Jb, 42.25.Bs, 42.30.Wb, 43.20.Gp (all)
  63. L.I. Dorman “Cosmic ray variations and space weather53 496–503 (2010)
    94.30.−d, 95.85.Ry, 96.50.S− (all)
  64. V.V. Safargaleev, E.D. Tereshchenko “Geophysical research in Spitsbergen Archipelago: status and prospects53 511–517 (2010)
    94.05.Sd, 94.20.−y, 94.30.−d (all)
  65. N.A. Armand, Yu.V. Gulyaev et alResults of solar wind and planetary ionosphere research using radiophysical methods53 517–523 (2010)
    94.20.−y, 96.50.Ci, 96.30.−t (all)
  66. V.E. Kunitsyn, E.D. Tereshchenko et alSatellite radio probing and the radio tomography of the ionosphere53 523–528 (2010)
    41.20.Jb, 94.20.−y, 94.80.+g (all)
  67. V.D. Kuznetsov “Space research at the Pushkov Institute of Terrestrial Magnetism, Ionosphere and Radio Wave Propagation, Russian Academy of Sciences53 528–534 (2010)
    07.87.+v, 94.20.−y, 94.80.+g (all)
  68. A.P. Vinogradov, A.V. Dorofeenko et alSurface states in photonic crystals53 243–256 (2010)
    41.20.Jb, 42.70.Qs, 73.20.−r (all)
  69. P.K. Shukla, B. Eliasson “Nonlinear aspects of quantum plasma physics53 51–76 (2010)
    05.30.Fk, 52.35.Mw, 52.35.Ra, 52.35.Sb (all)
  70. G.T. Zatsepin, T.M. Roganova “Cosmic ray investigations52 1139–1146 (2009)
    01.30.Bb, 01.65.+g, 95.55.Vj, 96.50.S− (all)
  71. A.V. Kukushkin “On the existence and physical meaning of the Zenneck wave52 755–756 (2009)
    41.20.Jb, 78.68.+m (all)
  72. V.G. Veselago “Energy, linear momentum, and mass transfer by an electromagnetic wave in a negative-refraction medium52 649–654 (2009)
    03.50.De, 41.20.Jb, 42.25.Bs (all)
  73. G.N. Makarov “The spectroscopy of clusters by intense pulses of VUV radiation from free electron lasers52 461–486 (2009)
    32.80.−t, 36.40.−c, 41.60.Cr, 42.55.Vc, 42.62.Fi, 52.50.−b, 82.50.Hp (all)
  74. S.A. Afanas’ev, D.I. Sementsov “Energy fluxes during the interference of electromagnetic waves51 355–361 (2008)
    41.20.Jb, 42.25.Bs, 42.25.Hz (all)
  75. 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)
  76. V.I. Nekorkin “Nonlinear oscillations and waves in neurodynamics51 295–304 (2008)
    05.45.−a, 05.45.Xt, 87.10.+e (all)
  77. B.P. Bezruchko, V.I. Ponomarenko et alModeling nonlinear oscillatory systems and diagnostics of coupling between them using chaotic time series analysis: applications in neurophysiology51 304–310 (2008)
    05.45.−a, 87.10.+e, 87.19.La (all)
  78. V.E. Fortov, D.H.H. Hoffmann, B.Yu. Sharkov “Intense ion beams for generating extreme states of matter51 109–131 (2008)
    28.52.Cx, 52.59.−f, 64.10.+h, 87.53.−j (all)
  79. V.N. Datsko, A.A. Kopylov “On surface electromagnetic waves51 101–102 (2008)
    41.20.Jb, 78.68.+m (all)
  80. A.V. Gurevich “Nonlinear effects in the ionosphere50 1091–1121 (2007)
    41.20.Jb, 52.35.−g, 52.40.Db, 94.20.−y (all)
  81. V.P. Silin, P.V. Silin “Bifurcation properties of the bremsstrahlung harmonics generated by a pumping field in plasmas50 729–740 (2007)
    42.65.−k, 42.65.Ky, 52.35.Mw (all)
  82. V.F. Kravchenko, A.A. Kuraev, A.K. Sinitsyn “Nonsynchronous interactions50 489–511 (2007)
    07.57.−c, 41.20.Jb, 84.40.−x (all)
  83. V.S. Ptuskin “On the origin of galactic cosmic rays50 534–540 (2007)
    01.10.Fv, 96.50.S−, 98.70.Sa (all)
  84. G.N. Kulipanov “Ginzburg’s invention of undulators and their role in modern synchrotron radiation sources and free electron lasers50 368–376 (2007)
    01.10.Fv, 07.85.−m, 07.85.Qe, 41.60.Cr (all)
  85. V.V. Shevchenko “Forward and backward waves: three definitions and their interrelation and applicability50 287–292 (2007)
    41.20.Jb, 78.20.Ci (all)
  86. A.A. Andronov, V.L. Bratman et alJoint meeting of the Editorial Board of the Journal ’Izvestiya Vuzov. Radiofizika’ and the Scientific Council of the Institute of Applied Physics of the Russian Academy of Sciences dedicated to the ninetieth birthday of Vitalii Lazarevich Ginzburg (4 October 2006)50 301–303 (2007)
    41.20.Jb, 41.60.Cr, 42.25.Ja, 52.35.Mw, 52.59.−f, 84.40.Ik, 87.10.+e, 94.20.−y, 96.50.S−, 98.70.Sa (all)
  87. A.A. Andronov “Chirality: optical rotation, the detailed balance principle, and life50 301–303 (2007)
    42.25.Ja, 87.10.+e (all)
  88. V.L. Bratman “Fast moving radiators and their use in high-frequency electronics50 303–308 (2007)
    41.60.Cr, 52.59.−f, 84.40.Ik (all)
  89. E.V. Derishev, V.V. Kocharovsky, V.V. Kocharovskii “Cosmic accelerators for ultrahigh-energy particles50 308–315 (2007)
    96.50.S−, 98.70.Sa (all)
  90. V.L. Frolov, N.V. Bakhmet’eva et alModification of the earth’s ionosphere by high-power high-frequency radio waves50 315–324 (2007)
    41.20.Jb, 52.35.Mw, 94.20.−y (all)
  91. A.M. Bykov, I.N. Toptygin “Instabilities of a multicomponent plasma with accelerated particles and magnetic field generation in astrophysical objects50 141–174 (2007)
    52.35.−g, 52.59.−f, 95.30.Qd (all)
  92. V.A. Ryabov “Ultrahigh-energy neutrinos from astrophysical sources and superheavy particle decays49 905–936 (2006)
    12.60.−i, 13.15.+g, 95.55.Vj, 95.85.Ry, 96.50.S− (all)
  93. E.N. Ragozin, I.I. Sobel’man “Laser sources in the soft X-ray spectral region48 1249–1250 (2005)
    41.60.Cr, 42.55.−f, 42.55.Vc (all)
  94. G.A. Mesyats, M.I. Yalandin “High-power picosecond electronics48 211–229 (2005)
    52.59.−f, 52.80.−s, 84.30.Jc, 84.40.−x, 84.70.+p (all)
  95. E.B. Aleksandrov, V.S. Zapasskii “A fairy tale of stopped light47 1033–1036 (2004)
    42.25.Ja, 42.50.Gy (all)
  96. A.V. Timofeev “Electromagnetic waves in a magnetized plasma near the critical surface47 555–582 (2004)
    41.20.Jb, 52.35.Hr, 52.55.Hc (all)
  97. A.V. Vashkovskii, E.H. Lokk “Negative refractive index for a surface magnetostatic wave propagating through the boundary between a ferrite and ferrite-insulator-metal media47 601–605 (2004)
    41.20.Jb, 42.25.Gy (all)
  98. V.M. Agranovich “Negative refraction in the optical domain and nonlinear wave propagation47 626–627 (2004)
    41.20.Jb, 42.65.−k (all)
  99. V.G. Nedorezov, A.A. Turinge, Yu.M. Shatunov “Photonuclear experiments with Compton-backscattered gamma beams47 341–358 (2004)
    25.20.−x, 41.50.+h, 41.60.Cr (all)
  100. K.Yu. Bliokh, Yu.P. Bliokh “What are the left-handed media and what is interesting about them?47 393–400 (2004)
    41.20.Jb, 42.15.Dp, 78.20.Ci (all)
  101. V.I. Klyatskin “Electromagnetic wave propagation in a randomly inhomogeneous medium as a problem in mathematical statistical physics47 169–186 (2004)
    02.50.Ey, 41.20.Jb, 42.25.Dd (all)
  102. E.N. Ragozin, I.I. Sobel’man “Free-electron laser: advancement into the X-ray region47 195–196 (2004)
    41.60.Cr, 41.75.Jv, 42.55.−f (all)
  103. A.Yu. Grosberg “A few remarks evoked by Binhi and Savin’s review on magnetobiology46 1113–1116 (2003)
    82.39.−k, 87.10.+e, 87.50.Mn (all)
  104. V.G. Veselago “Electrodynamics of materials with negative index of refraction46 764–768 (2003)
    41.20.Jb, 42.15.−i, 42.70.−a (all)
  105. B.M. Bolotovskii, A.V. Serov “Special features of motion of particles in an electromagnetic wave46 645–655 (2003)
    03.50.+p, 41.60.Cr, 41.75.−i (all)
  106. V.N. Binhi, A.V. Savin “Effects of weak magnetic fields on biological systems: physical aspects46 259–291 (2003)
    82.39.−k, 87.10.+e, 87.50.Mn (all)
  107. Yu.F. Krupyanskii, V.I. Gol’danskii “Dynamical properties and energy landscape of simple globular proteins45 1131–1151 (2002)
    87.10.+e, 87.15.By, 87.15.He, 87.80.−y (all)
  108. F.I. Ataullakhanov, V.I. Zarnitsyna et alA new class of stopping self-sustained waves: a factor determining the spatial dynamics of blood coagulation45 619–636 (2002)
    05.45.−a, 87.10.+e, 87.19.Uv (all)
  109. V.G. Niz’ev “Dipole-wave theory of electromagnetic diffraction45 553–559 (2002)
    41.20.Jb, 42.25.Fx (all)
  110. M.V. Fok “On D S Chernavskii’s paper ’’The origin of life and thinking from the viewpoint of modern physics’’44 1093–1093 (2001)
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  115. V.A. Kovarskii “Quantum processes in biological molecules. Enzyme catalysis42 797–815 (1999)
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  150. V.V. Migulin “Hundredth anniversary of the work of H. Hertz on the experimental proof of the existence of the electromagnetic waves32 376–376 (1989)
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    96.50.S−, 98.70.Rz (all)
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    52.35.Py, 52.35.Hr, 52.35.Mw (all)
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  201. A.G. Sitenko “All-union conference on plasma theory15 356–364 (1972)
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  219. V.A. Kizel’ “Modern status of the theory of light reflection10 485–508 (1968)
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  220. V.G. Veselago “The electrodynamics of substances with simultaneously negative values of ε and μ10 509–514 (1968)
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  222. I.S. Shklovskii “Discovery of pulsed sources of cosmic radio emission with strictly periodic variation of the flux11 435–436 (1968)
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  225. A.N. Kozlova, Yu.A. Khvorov “The new physics demonstrations9 916–917 (1967)
    41.20.Jb, 77.22.−d, 84.40.Az, 84.40.Ba (all)
  226. E.A. Kaner, V.G. Skobov “Electromagnetic waves in metals in a magnetic field9 480–503 (1967)
    41.20.Jb, 76.40.+b, 72.30.+q (all)
  227. V.L. Ginzburg “Powerful X-ray emission of radio galaxies9 543–550 (1967)
    98.54.Gr, 98.70.Qy, 98.70.Sa (all)
  228. I.M. Dremin, G.B. Zhdanov, S.I. Syrovatskii “All-Union conference on cosmic-ray physics10 265–267 (1967)
    01.10.Fv, 96.50.S− (all)
  229. Ya.B. Zel’dovich, L.B. Okun, S.B. Pikel’ner “Quarks: astrophysical and physicochemical aspects8 702–709 (1966)
    95.30.Cq, 14.65.−q, 98.80.Cq, 11.30.Ly, 96.50.S−, 14.20.Dh (all)
  230. V.N. Tsytovich “Statistical acceleration of particles in a turbulent plasma9 370–404 (1966)
    52.35.Ra, 52.35.Mw (all)
  231. B.M. Bolotovskii, G.V. Voskresenskii “Diffraction radiation9 73–96 (1966)
    41.60.Bq, 41.20.Jb (all)
  232. V.L. Ginzburg, S.I. Syrovatskii “Some problems of gamma and X-ray astronomy7 696–720 (1965)
    98.70.Qy, 98.70.Rz, 98.70.Sa (all)
  233. N.V. Karlov, O.N. Krokhin “The 1964 Nobel prize in physics8 143–144 (1965)
    01.10.Cr, 84.40.Ik, 42.55.−f (all)
  234. B.Sh. Perkal’skis, V.L. Larin “Lecture demonstrations with centimeter waves6 940–941 (1964)
    41.20.Jb
  235. M.G. Meshcheryakov, N.A. Perfilov “In memory of Lev Vladimirovich Mysovskiĭ (on the seventy-fifth anniversary of his birth)6 945–946 (1964)
    01.60.+q, 96.50.S−, 98.70.Vc, 24.75.+i (all)
  236. V.L. Ginzburg, L.V. Kurnosova et alSoviet satellite and rocket investigations of the nuclear component of cosmic rays7 230–269 (1964)
    96.50.sb, 98.70.Sa, 98.70.Vc, 98.38.Am, 95.55.−n (all)
  237. On the fiftieth anniversary of the death of P. N. Lebedev5 616–616 (1963)
    01.60.+q, 41.20.Jb (all)
  238. A.E. Salomonovich “Millimeter-wave optics and radio astronomy5 629–633 (1963)
    84.40.Xb, 42.79.Bh, 42.79.Ci, 41.20.Jb (all)
  239. V.L. Ginzburg “Cosmic rays on Earth and in the Universe4 553–575 (1962)
    96.50.sb, 96.50.Vg, 94.20.wq, 94.30.Xy, 98.70.Sa (all)
  240. N.V. Karlov, A.M. Prokhorov et alApplication of paramagnetic crystals in quantum electronics5 401–429 (1962)
    76.30.Fc, 84.40.Ik, 42.50.Pq, 71.70.Jp (all)
  241. S.I. Pekar “Supplementary light waves in crystals and exciton absorption5 515–521 (1962)
    78.20.Fm, 78.20.Ci, 71.35.Cc, 42.25.Ja (all)
  242. R.V. Pound “On the weight of photons3 875–880 (1961)
    76.80.+y, 63.70.+h, 71.70.−d, 41.20.Jb (all)
  243. N.G. Basov, O.N. Krokhin, Yu.M. Popov “Generation, amplification, and detection of infrared and optical radiation by quantum-mechanical systems3 702–728 (1961)
    41.20.Jb, 78.20.−e (all)
  244. V.L. Ginzburg, S.I. Syrovatskii “Present status of the question of the origin of cosmic rays3 504–541 (1961)
    96.50.sb, 96.50.Dj, 97.60.Bw, 96.60.Q−, 98.70.Sa (all)
  245. A.A. Rukhadze, V.P. Silin “Electrodynamics of media with spatial dispersion4 459–484 (1961)
    41.20.Gz, 41.20.Jb, 77.22.Ch (all)
  246. B.D. Tartakovskii “Symposium on diffraction of waves4 511–520 (1961)
    41.20.Jb
  247. D.I. Sakharov “Experiments on refraction and reflection of polarized light4 521–522 (1961)
    42.25.Gy, 42.25.Ja (all)
  248. F.G. Bass, S.Ya. Braude et alFluctuations of electromagnetic waves in the troposphere in the presence of separation boundaries4 51–69 (1961)
    92.60.Ta, 41.20.Jb, 92.60.hk, 02.50.−r (all)
  249. B. Bagaryatskii “Radar reflections from aurorae4 70–95 (1961)
    84.40.Xb, 41.20.Jb, 92.60.hw, 84.40.Ua (all)
  250. N.A. Dobrotin “International cosmic ray conference2 974–986 (1960)
    98.70.Sa, 96.50.sd, 96.50.sb (all)
  251. S.N. Vernov, A.E. Chudakov “Investigations of cosmic radiation and of the terrestrial corpuscular radiation by means of rockets and satellites3 230–250 (1960)
    95.40.+s, 96.50.S−, 94.30.Va, 94.80.+g (all)
  252. V.L. Ginzburg, A.V. Gurevich “Nonlinear phenomena in a Plasma located in an alternating electromagnetic field3 115–146 (1960)
    52.35.Mw, 52.25.Mq, 52.25.Dg, 52.20.Fs, 52.20.Hv, 52.35.Hr (all)
  253. A.M. Kugushev “RADIO ELECTRONICS (On the 100th Birthday of A. S. Popov)2 305–328 (1959)
    84.40.Ua, 41.20.Jb, 85.40.−e, 84.40.Xb (all)
  254. A.D. Panov, D.M. Podorozhnyi, A.N. Turundaevskii “Direct observations of cosmic rays: current status of the problem”, accepted
    96.50.S−
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