PACS numbers

01.40.E− Science in school 96.50.sb Composition, energy spectra and interactions 96.50.sd Extensive air showers 97.60.Bw Supernovae 98.62.Ra Intergalactic matter; quasar absorption and emission-line systems; Lyman forest
  1. Yu.A. Shchekinov, E.O. Vasiliev, B.M. Shustov “Initial episodes of the chemical evolution of the intergalactic medium66 1071–1094 (2023)
    26.30.−k, 95.30.Lz, 98.38.−j, 98.58.−w, 98.62.Ra (all)
  2. 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)
  3. Yu.V. Stenkin “The LHAASO project: first results and prospects65 980–985 (2022)
    96.50.S−, 96.50.sd, 98.70.Sa (all)
  4. 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)
  5. G.S. Bisnovatyi-Kogan, S.G. Moiseenko “Gravitational waves and core-collapse supernovae60 843–850 (2017)
    04.80.Nn, 95.85.Sz, 97.60.Bw, 97.60.Lf (all)
  6. P.V. Baklanov, S.I. Blinnikov et alITEP's achievements in astrophysics59 796–806 (2016)
    01.65.+g, 97.60.Bw, 97.80.−d (all)
  7. B.P. Schmidt “The path to measuring an accelerating Universe56 (10) (2013)
    01.10.Fv, 95.36.+x, 97.60.Bw, 98.80.Es (all)
  8. A.G. Riess “My path to the accelerating Universe56 (10) (2013)
    01.10.Fv, 95.36.+x, 97.60.Bw (all)
  9. S. Perlmutter “Measuring the acceleration of the cosmic expansion using supernovae56 (10) (2013)
    01.10.Fv, 95.36.+x, 97.60.Bw, 98.80.Es (all)
  10. Forty years of the Institute for Nuclear Research (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 22 December 2010)54 939–974 (2011)
    01.10.Fv, 01.52.+r, 01.65.+g, 14.60.Pq, 14.60.−z, 25.30.Pt, 26.65.+t, 28.60.+s, 29.20.−c, 29.40.Ka, 32.80.Qk, 32.80.Wr, 42.55.−f, 87.56.B−, 95.55.Vj, 96.50.sb, 96.50.sh, 96.60.Vg (all)
  11. I.I. Tkachev “Telescope Array Observatory observations of the Greisen—Zatsepin—Kuzmin effect54 954–961 (2011)
    95.55.Vj, 96.50.sb, 96.50.sh (all)
  12. V.S. Imshennik “Rotational explosion mechanism for collapsing supernovae and the two-stage neutrino signal from supernova 1987A in the Large Magellanic Cloud53 1081–1092 (2010)
    95.85.Sz, 97.60.Bw, 97.80.−d (all)
  13. V.S. Ptuskin “The origin of cosmic rays53 958–961 (2010)
    96.50.S−, 97.60.Bw, 98.62.Nx (all)
  14. A.B. Aleksandrov, A.V. Bagulya et alCharge spectrum of galactic cosmic ray nuclei as measured in meteorite olivines53 805–808 (2010)
    21.10.Ft, 26.40.+r, 95.55.Vj, 96.30.Za, 96.50.sb (all)
  15. D.Yu. Tsvetkov “Type Ib/c supernovae: new observational data45 900–902 (2002)
    97.60.Bw
  16. V.S. Imshennik “Supernova explosions and historical chronology43 509–513 (2000)
    01.75.+m, 01.90.+g, 97.60.Bw, 98.58.Mj (all)
  17. N.V. Ardelyan, G.S. Bisnovatyi-Kogan, S.G. Moiseenko “Explosion mechanisms of supernovae: the magnetorotational model40 1076–1079 (1997)
    04.40.Dg, 95.30.−k, 97.60.Bw (all)
  18. V.L. Ginzburg “The origin of cosmic rays (Forty years later)36 (7) 587–591 (1993)
    98.70.Sa, 96.50.sb, 96.50.sd, 98.70.Dk (all)
  19. S.T. Belyaev, S.S. Gershtein et alIsai Izrailevich Gurevich (on his eightieth birthday)35 (8) 723–724 (1992)
    01.60.+q, 96.50.sb, 21.65.+f, 14.60.Lm, 13.40.Em, 28.41.Te (all)
  20. I.V. Andreev, V.L. Ginzburg et alEvgenii L’vovich Feinberg (on his eightieth birthday)35 (6) 533–534 (1992)
    01.60.+q, 23.40.−s, 29.30.Hs, 96.50.sb (all)
  21. 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)
  22. G.V. Domogatskii, G.T. Zatsepin et alAleksandr Evgen’evich Chudakov (on his seventieth birthday)34 (7) 637–638 (1991)
    01.60.+q, 96.50.sb, 13.85.−t, 41.60.Bq (all)
  23. A.D. Erlykin, E.A. Mamidzhanyan “Autumn school ’Interactions of hadrons at super-accelerator energies’34 (4) 334–339 (1991)
    01.40.E−, 29.40.Mc, 96.50.sd, 13.60.Hb, 96.50.sb (all)
  24. B.A. Trubnikov “On the possible generation of cosmic rays in plasma pinches33 (12) 1061–1071 (1990)
    98.70.Sa, 96.50.sb, 96.50.Tf, 52.40.Kh, 94.05.Jq (all)
  25. V.G. Ryasnyĭ “Supernova shells33 (5) 393–395 (1990)
    97.60.Bw, 96.10.+i, 97.60.Gb, 97.60.Jd, 96.60.qe (all)
  26. V.L. Ginzburg, V.A. Dogel’ “Erratum: Some aspects of gamma-ray astronomy [Sov. Phys. Uspekhi 32, 358 (May 1989)]32 1117–1117 (1989)
    98.70.Rz, 98.70.Sa, 98.58.Db, 97.60.Bw, 98.62.Gq (all)
  27. V.L. Ginzburg, V.A. Dogel’ “Some aspects of gamma-ray astronomy32 385–415 (1989)
    98.70.Rz, 98.70.Sa, 98.58.Db, 97.60.Bw, 98.62.Gq (all)
  28. V.L. Dadykin, G.T. Zatsepin, O.G. Ryazhskaya “Events detected by underground detectors on February 23, 198732 459–468 (1989)
    97.10.Bt, 95.30.Sf, 97.60.Bw, 14.60.Lm, 29.40.Mc (all)
  29. A.D. Erlykin, E.A. Mamidzhanyan, V.A. Tsarev “Autumn school ’Interaction of hadrons at above-accelerator energies’32 380–383 (1989)
    96.50.sb, 96.50.sd, 97.60.Bw, 98.62.Ra, 01.40.E− (all)
  30. N.N. Chugai “Supernova in the Large Magellanic Cloud: first year of observations31 775–776 (1988)
    97.60.Bw, 98.56.Si, 97.60.Jd, 97.10.Fy, 97.10.Ri (all)
  31. G.S. Bisnovatyi-Kogan “Gravitational collapse, neutrino radiation, and supernova light curves31 776–777 (1988)
    97.60.Bw, 95.30.Sf, 95.55.Qf, 95.75.De, 97.20.Rp, 97.10.Gz (all)
  32. V.L. Ginzburg “Astrophysical aspects of cosmic-ray research (first 75 years and outlook for the future)31 491–510 (1988)
    96.50.sb, 98.70.Sa, 98.80.−k, 01.30.Cc (all)
  33. E.G. Berezhko, G.F. Krymskii “Acceleration of cosmic rays by shock waves31 27–51 (1988)
    52.65.Kj, 95.30.Qd, 96.50.Fm, 97.60.Bw, 98.70.Sa (all)
  34. E.G. Berezhko, G.F. Krymskii “Acceleration of cosmic rays by shock waves31 27–51 (1988)
    96.50.Fm, 98.70.Sa, 97.60.Bw, 52.65.Kj, 95.30.Qd (all)
  35. G.B. Khristiansen “Prospects for studying cosmic rays at ultrahigh energies (1015-1021 eV)30 1110–1112 (1987)
    96.50.sb, 98.70.Vc, 96.50.sd, 98.70.Sa (all)
  36. G.T. Zatsepin, Yu.A. Nechin, G.B. Khristiansen “Use of the magnetic induction of iron in cosmic-ray and high-energy physics30 1007–1008 (1987)
    41.20.Gz, 75.60.Ej, 96.50.sb, 96.50.sd (all)
  37. E.A. Mamidzhanyan, S.I. Nikol’skii “Possibility of experimental ultrahigh-energy gamma-ray astronomy30 542–543 (1987)
    98.70.Rz, 98.70.Sa, 97.60.Gb, 98.54.Aj, 98.58.Mj, 96.50.sd (all)
  38. V.L. Ginzburg, M.A. Markov et alGeorgii Timofeevich Zatsepin (On his seventieth birthday)30 441–442 (1987)
    01.60.+q, 96.50.sd, 96.50.sb, 95.30.Cq, 96.60.Jw, 26.65.+t (all)
  39. A.P. Aleksandrov, V.A. Ambartsumyan et alAnatolii Alekseevich Logunov (On his sixtieth birthday)30 290–292 (1987)
    01.60.+q, 11.10.Hi, 11.10.Gh, 96.50.sb, 13.75.Cs (all)
  40. V.B. Braginskii, L.P. Grishchuk “Gravitational wave astronomy30 81–82 (1987)
    04.30.−w, 97.60.Bw, 98.80.Bp, 98.80.Cq (all)
  41. S.P. Mikheev, A.Yu. Smirnov “Neutrino oscillations in a medium with variable density29 1155–1157 (1986)
    14.60.Lm, 14.60.Pq, 96.50.Vg, 96.50.sb (all)
  42. M.B. Voloshin, M.I. Vysotskii, L.B. Okun’ “Possible electromagnetic properties of the neutrino and variations of the solar neutrino flux29 1070–1070 (1986)
    14.60.Lm, 96.50.sb, 96.50.Vg, 13.40.Em, 11.30.Ly, 97.20.−w (all)
  43. L.N. Smirnova, M.A. Shifman, E.V. Shuryak “Eleventh school on quantum chromodynamics and grand unification models29 1071–1074 (1986)
    01.40.E−, 11.25.Mj, 11.30.Pb, 12.10.−g, 12.38.−t, 13.40.Em (all)
  44. E.A. Mamidzhanyan, A.D. Erlykin, V.A. Tsarev “Interaction of hadrons at superhigh energies29 582–584 (1986)
    01.30.Cc, 96.50.sd, 12.38.−t, 25.80.Hp, 25.40.−h, 27.20.+n (all)
  45. V.S. Berezinskii “High energy neutrino astrophysics28 728–730 (1985)
    96.50.sb, 97.60.Gb, 13.75.Cs, 97.60.Bw, 97.10.Cv, 97.20.Li (all)
  46. Yu.G. Abov, V.V. Vladimirskii et alAleksandr Ovseevich Vaisenberg (Obituary)28 733–734 (1985)
    01.60.+q, 96.50.sb, 13.20.Cz, 14.40.Aq, 13.35.Bv, 14.60.Ef (all)
  47. G.B. Zhdanov “Workshop on the EHR experiment28 432–433 (1985)
    01.30.Cc, 98.70.Vc, 96.50.sd, 12.38.−t, 13.66.Jn, 13.87.Ce (all)
  48. G.A. Askar’yan “Investigation of the Earth by means of neutrinos. Neutrino geology27 896–900 (1984)
    96.50.sb, 91.60.Pn (all)
  49. A.K. Likhoded “Tenth All-Union School on Inelastic Interactions at High Energies27 647–648 (1984)
    01.40.E−, 96.50.sb, 11.30.Rd, 96.50.sd, 25.40.−h, 24.85.+p (all)
  50. G.A. Gusev, I.M. Zheleznykh “On the possibility of detection of neutrinos and muons on the basis of radio radiation of cascades in natural dielectric media (antarctic ice sheet and so forth)27 550–552 (1984)
    96.50.sd, 96.50.sb, 95.55.Vj, 14.80.Hv, 14.80.Ly (all)
  51. V.L. Ginzburg “The origin of Cosmic Rays (Present State of the Problem)17 795–796 (1975)
    01.10.Fv, 96.50.sb, 98.70.Sa, 97.60.Bw (all)
  52. G.B. Zhdanov “Errata to the article by G. B. Zhdanov, ’Search for Transuranium Elements,’ Vol. 16, No. 516 944–944 (1974)
    25.85.Ca, 21.60.Cs, 27.90.+b, 96.50.sb, 21.10.Ky, 23.60.+e (all)
  53. G.B. Zhdanov “Search for transuranium elements (methods, results, and prospects)16 642–657 (1974)
    25.85.Ca, 21.60.Cs, 27.90.+b, 96.50.sb, 21.10.Ky, 23.60.+e (all)
  54. L.G. Landsberg “The search for quarks16 251–274 (1973)
    12.39.−x, 14.65.−q, 13.75.Cs, 96.50.sd (all)
  55. P.V. Shcheglov “Astroclimatic Conditions in Central Asia and Kazakhstan14 792–794 (1972)
    97.30.Qt, 97.60.Bw, 95.75.De, 97.10.Ri, 98.80.Es, 97.10.Cv (all)
  56. A.E. Salomonovich “Extra-atmospheric submillimeter astronomy12 731–742 (1970)
    98.38.Bn, 98.62.Ra, 98.54.Aj, 96.60.Ub, 95.85.Fm, 98.54.Ep (all)
  57. V.L. Ginzburg “Pulsars (General Review)12 800–804 (1970)
    97.60.Gb, 97.60.Bw (all)
  58. N.S. Kardashev “Possibility of Observing Extragalactic Pulsars12 808–808 (1970)
    97.60.Gb, 97.60.Bw, 98.70.Dk, 98.54.Gr, 98.54.Aj (all)
  59. I.L. Rozental’ “Interaction of cosmic muons of high energy11 49–65 (1968)
    96.50.sb, 95.30.Cq, 96.60.Vg, 14.40.Aq (all)
  60. Ya.B. Zel’dovich “The "hot" model of the Universe9 602–617 (1967)
    98.80.Cq, 95.30.Qd, 98.80.Es, 98.62.Ra (all)
  61. E.L. Feinberg “The problem of quarks in cosmic rays10 256–261 (1967)
    96.50.sb, 14.65.−q, 11.30.Ly, 95.30.Cq (all)
  62. D.I. Blokhintsev “High-energy physics and the fundamental principles of modern theory8 612–613 (1966)
    96.50.sb, 96.50.Vg, 13.85.Dz, 13.60.Fz, 11.10.−z, 11.30.Er (all)
  63. B.M. Pontekorvo “Elementary particle physics is expensive: is it necessary?8 617–618 (1966)
    14.20.Jn, 96.50.sb, 25.30.Mr, 12.39.−x, 95.30.Cq (all)
  64. 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)
  65. V.L. Ginzburg, S.I. Syrovatskii “Origin of cosmic rays9 223–235 (1966)
    96.50.sb, 95.30.Qd, 98.54.Gr, 97.60.Bw (all)
  66. 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)
  67. S.I. Nikol’skii “Extensive air showers of cosmic radiation5 849–877 (1963)
    96.50.sd, 96.50.sb, 98.70.Vc (all)
  68. V.I. Veksler “DMITRIĬ VLADIMIROVICH SKOBEL’TSYN (On the occasion of his seventieth birthday)5 1024–1028 (1963)
    01.60.+q, 29.40.Gx, 96.50.sd (all)
  69. 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)
  70. I.S. Shklovskii “RADIO GALAXIES5 365–400 (1962)
    98.70.Dk, 95.55.Br, 98.54.Gr, 97.60.Bw (all)
  71. N.A. Dobrotin, N.L. Grigorov et alSERGEĬ NIKOLAEVICH VERNOV (on his fiftieth birthday)3 810–812 (1961)
    01.60.+q, 96.50.sd, 96.50.sb (all)
  72. 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)
  73. N.A. Dobrotin “International cosmic ray conference2 974–986 (1960)
    98.70.Sa, 96.50.sd, 96.50.sb (all)
  74. G.G. Getmantsev, V.L. Ginzburg, I.S. Shklovskii “Radio astronomical investigations with the aid of artificial satellites1 65–67 (1958)
    95.40.+s, 98.70.Vc, 96.50.sb (all)
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