PACS numbers

52.80.−s Electric discharges 92.60.Pw Atmospheric electricity, lightning
  1. N.M. Zubarev, G.A. Mesyats, M.I. Yalandin “Conditions for the generation of runaway electrons in an air gap with an inhomogeneous electric field: theory and experimentPhys. Usp. 67 803–813 (2024)
    51.50.+v, 52.80.−s, 79.70.+q (all)
  2. E.A. Sosnin, N.Yu. Babaeva et alModeling of transient luminous events in Earth's middle atmosphere with apokamp dischargePhys. Usp. 64 191–210 (2021)
    07.05.Tp, 52.80.Mg, 52.90.+z, 92.60.Pw (all)
  3. L.P. Babich “Relativistic runaway electron avalanchePhys. Usp. 63 1188–1218 (2020)
    52.80.Tn, 52.90.+z, 92.60.Pw (all)
  4. M.L. Shmatov “Once again on the Gatchina discharge and ball lightning (comments on G.D. Shabanov's paper "On the possibility of making natural ball lightning using a new pulse discharge type in the laboratory" [Phys. Usp. 62 92 (2019); Usp. Fiz. Nauk 189 95 (2019)])Phys. Usp. 63 96–98 (2020)
    51.50.+v, 52.80.Mg, 92.60.Pw (all)
  5. G.D. Shabanov “On relation between theoretical and experimental components in the papers on ball lightning (reply to M.L. Shmatov's comments [Usp. Fiz. Nauk 190 107 (2020)] on the paper "On the possibility of making natural ball lightning using a new pulse discharge type in the laboratory" [Phys. Usp. 62 92 (2019); Usp. Fiz. Nauk 189 95 (2019)])Phys. Usp. 63 99–100 (2020)
    01.50.My, 01.55.+b, 05.65.+b, 41.20.Cv, 51.50.+v, 52.80.Mg, 92.60.Pw (all)
  6. L.P. Babich “Thunderous neutronsPhys. Usp. 62 976–999 (2019)
    24.60.Lz, 25.20.−x, 92.60.Pw (all)
  7. G.D. Shabanov “On the possibility of making a natural ball lightning using a new pulse discharge type in the laboratoryPhys. Usp. 62 92–107 (2019)
    52.80.Mg, 92.60.Pw (all)
  8. D.I. Iudin, S.S. Davydenko et alPhysics of lightning: new model approaches and prospects of the satellite observationsPhys. Usp. 61 766–778 (2018)
    92.60.Pw, 93.85.+q (all)
  9. B.M. Smirnov “Electrical cycle in the Earth’s atmospherePhys. Usp. 57 1041–1062 (2014)
    92.60.Bh, 92.60.Mt, 92.60.Pw (all)
  10. E.A. Mareev “Global electric circuit research: achievements and prospectsPhys. Usp. 53 504–511 (2010)
    92.60.Pw, 93.85.Jk, 94.20.Ss (all)
  11. L.D. Tsendin “Nonlocal electron kinetics in gas-discharge plasmaPhys. Usp. 53 133–157 (2010)
    52.25.Dg, 52.80.−s, 82.33.Xj (all)
  12. L.N. Pyatnitskii “Optical discharge in the field of a Bessel laser beamPhys. Usp. 53 159–177 (2010)
    51.50.+v, 52.80.−s, 52.90.+z (all)
  13. G.S. Paiva, J.V. Ferreira et alEnergy density calculations for ball-lightning-like luminous silicon ballsPhys. Usp. 53 209–213 (2010)
    52.80.Mg, 92.60.Pw (all)
  14. G.D. Shabanov “Lightning ball: experiments on creation and hypotheses (comment on “Energy density calculations for ball-lightning-like luminous silicon balls” by G S Paiva, J V Ferreira, C C Bastos, M V P dos Santos, A C Pavão)Phys. Usp. 53 215–216 (2010)
    52.80.Mg, 92.60.Pw (all)
  15. A.V. Gurevich, A.N. Karashtin et alNonlinear phenomena in the ionospheric plasma. Effects of cosmic rays and runaway breakdown on thunderstorm dischargesPhys. Usp. 52 735–745 (2009)
    52.80.−s, 92.60.Pw, 94.20.wq (all)
  16. B.M. Smirnov “Modeling of gas discharge plasmaPhys. Usp. 52 559–571 (2009)
    34.80.−i, 51.50.+v, 52.20.−j, 52.80.−s (all)
  17. G.A. Mesyats “Electron emission from ferroelectric plasma cathodesPhys. Usp. 51 79–100 (2008)
    52.80.−s, 84.70.+p, 85.45.−w (all)
  18. A.R. Aramyan, G.A. Galechyan “Vortices in a gas-discharge plasmaPhys. Usp. 50 1147–1169 (2007)
    42.55.−f, 52.20.Hv, 52.75.−d, 52.80.−s (all)
  19. G.A. Mesyats “Similarity laws for pulsed gas dischargesPhys. Usp. 49 1045–1065 (2006)
    52.80.−s, 52.80.Dy, 52.80.Pi (all)
  20. G.A. Mesyats, M.I. Yalandin “High-power picosecond electronicsPhys. Usp. 48 211–229 (2005)
    52.59.−f, 52.80.−s, 84.30.Jc, 84.40.−x, 84.70.+p (all)
  21. A.I. Egorov, S.I. Stepanov, G.D. Shabanov “Laboratory demonstration of ball lightningPhys. Usp. 47 99–101 (2004)
    52.80.−s, 92.60.Pw (all)
  22. M.I. Lomaev, V.S. Skakun et alExcilamps: efficient sources of spontaneous UV and VUV radiationPhys. Usp. 46 193–209 (2003)
    07.60.−j, 42.72.Bj, 52.80.−s (all)
  23. V.A. Saranin “Electric field strength of charged conducting balls and the breakdown of the air gap between themPhys. Usp. 45 1287–1292 (2002)
    41.20.Cv, 52.80.−s (all)
  24. A.V. Gurevich, K.P. Zybin “Runaway breakdown and electric discharges in thunderstormsPhys. Usp. 44 1119–1140 (2001)
    52.80.−s, 52.80.Mg, 92.60.Pw (all)
  25. E.M. Bazelyan, Yu.P. Raizer “The mechanism of lightning attraction and the problem of lightning initiation by lasersPhys. Usp. 43 701–716 (2000)
    52.80.−s, 52.80.Mg, 51.50.+v, 52.90.+z (all)
  26. V.V. Osipov “Self-sustained volume dischargePhys. Usp. 43 221 (2000)
    51.50.+v, 52.80.−s, 52.80.Tn, 52.90.+z (all)
  27. B.M. Smirnov “Long-lived light phenomena in the atmospherePhys. Usp. 37 517–519 (1994)
    52.80.Mg, 92.60.Pw, 93.55.+z (all)
  28. B.M. Smirnov “Radiative processes involving fractal structuresPhys. Usp. 36 (7) 592–603 (1993)
    61.43.Hv, 52.80.−s (all)
  29. B.M. Smirnov “Observational properties of ball lightningSov. Phys. Usp. 35 (8) 650–670 (1992)
    52.80.Mg, 92.60.Pw, 52.80.Hc (all)
  30. B.A. Trubnikov “Constrictions in a relativistic pinch with a longitudinal magnetic fieldSov. Phys. Usp. 34 (11) 1018–1020 (1991)
    52.27.Ny, 52.58.Lq, 52.65.Kj, 52.80.−s (all)
  31. A.A. Rukhadze, N.N. Sobolev, V.V. Sokovikov “Similarity relations for low-temperature nonisothermal dischargesSov. Phys. Usp. 34 (9) 827–829 (1991)
    52.80.−s, 52.25.Dg, 52.25.Jm, 52.25.Fi (all)
  32. L.M. Biberman, B.A. Veklenko et alValentin Aleksandrovich Fabrikant (Obituary)Sov. Phys. Usp. 34 (6) 549–550 (1991)
    01.60.+q, 52.25.Os, 52.70.Kz, 52.80.−s, 52.20.−j, 52.38.Bv (all)
  33. B.M. Smirnov “Physics of ball lightningSov. Phys. Usp. 33 (4) 261–288 (1990)
    92.60.Pw, 92.60.Vb (all)
  34. B.M. Smirnov “Current problems in ball lightning scienceSov. Phys. Usp. 33 (4) 309–310 (1990)
    01.30.Vv, 52.80.Mg, 92.60.Pw (all)
  35. V.D. Rusanov, A.A. Fridman, G.V. Sholin “The physics of a chemically active plasma with nonequilibrium vibrational excitation of moleculesSov. Phys. Usp. 24 447–474 (1981)
    52.40.−w, 52.80.−s (all)
  36. L.M. Biberman, A.M. Prokhorov et alNikolai Nikolaevich Sobolev (on his sixtieth birthday)Sov. Phys. Usp. 17 623–624 (1975)
    01.60.+q, 52.80.−s (all)
  37. N.A. Neretina, V.I. Perevodchikov et alBoris Nikolaevich Klyarfel’d (obituary)Sov. Phys. Usp. 17 286–287 (1974)
    01.60.+q, 52.80.−s (all)
  38. A.F. Aleksandrov, A.A. Rukhadze “High-current electric-discharge light sourcesSov. Phys. Usp. 17 44–63 (1974)
    52.80.−s
  39. A.F. Aleksandrov, A.A. Rukhadze “Heavy-current Electric-discharge Light SourcesSov. Phys. Usp. 14 814–815 (1972)
    52.80.−s
  40. G.A. Mesyats, Yu.I. Bychkov, V.V. Kremnev “Pulsed nanosecond electric discharges in gasesSov. Phys. Usp. 15 282–297 (1972)
    52.80.−s, 51.50.+v (all)
  41. L.M. Biberman “Valentin Aleksandrovich FabrikantSov. Phys. Usp. 10 798–799 (1968)
    01.60.+q, 42.25.−p, 52.80.−s (all)
  42. A.V. Nedospasov “StriationsSov. Phys. Usp. 11 174–187 (1968)
    52.80.−s, 52.35.−g (all)
  43. L. Pekarek “Ionization waves (striations) in a discharge plasmaSov. Phys. Usp. 11 188–208 (1968)
    52.80.−s, 52.35.−g (all)
  44. I.M. Imyanitov, K.S. Shifrin “Present state of research on atmospheric electricitySov. Phys. Usp. 5 292–322 (1962)
    92.60.Pw, 92.60.Nv, 92.60.Qx (all)
  45. V.V. Vishnyakov, H.-W. T’ang, A.A. Tyapkin “LOW-VOLTAGE HALOGEN COUNTERS (Mechanism of Discharge)Sov. Phys. Usp. 3 765–777 (1961)
    52.80.−s
  46. G.M. Strakhovskii, N.V. Kravtsov “Strong magnetic fieldsSov. Phys. Usp. 3 260–272 (1960)
    52.80.−s, 41.20.−q, 82.47.−a, 84.32.Hh (all)
  47. A.F. Kononkov “Mikhail Fedorovich Spasskii — eminent russian physicist and meteorologist of the 19TH century (on his 150th birthday and the 100th anniversary of his death)Sov. Phys. Usp. 2 620–623 (1959)
    92.60.hv, 92.60.Ry, 92.60.Pw, 92.60.Nv (all)
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