PACS numbers

52.30.Cv Magnetohydrodynamics 52.35.Mw Nonlinear phenomena: waves, wave propagation, and other interactions (including parametric effects, mode coupling, ponderomotive effects, etc.) 52.65.Kj Magnetohydrodynamic and fluid equation 96.50.Tf MHD waves; plasma waves, turbulence
  1. 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)
  2. V.D. Kuznetsov, A.I. Osin “Heliophysics: from observations to models and applications63 812–817 (2020)
    52.35.Bj, 52.35.Tc, 52.65.Kj (all)
  3. 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)
  4. E.P. Kurbatov, A.G. Zhilkin, D.V. Bisikalo “Modified magnetohydrodynamics model including wave turbulence: astrophysical applications60 798–817 (2017)
    52.30.Cv, 52.35.Bj, 52.35.Ra, 52.65.Kj, 95.30.Qd, 94.05.Lk, 97.80.Gm (all)
  5. 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)
  6. E.P. Popova “Current results on the asymptotics of dynamo models59 513–530 (2016)
    52.30.Cv, 96.60.Hv, 96.60.Q− (all)
  7. A.A. Chernyshov, K.V. Karelsky, A.S. Petrosyan “Subgrid-scale modeling for the study of compressible magnetohydrodynamic turbulence in space plasmas57 421–452 (2014)
    47.27.E−, 47.27.ep, 47.27.Gs, 52.35.Ra, 52.65.Kj (all)
  8. 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)
  9. L.M. Zelenyi, A.V. Artemyev et alMetastability of current sheets53 933–941 (2010)
    52.30.Cv, 52.35.Py, 52.35.Vd (all)
  10. A.G. Frank “Dynamics of current sheets underlying flare-type events in magnetized plasmas53 941–947 (2010)
    52.30.Cv, 52.35.Vd, 96.60.Q− (all)
  11. B.V. Somov “Magnetic reconnection in solar flares53 954–958 (2010)
    52.30.Cv, 52.35.Vd, 96.60.qe (all)
  12. 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)
  13. D.A. Shalybkov “Hydrodynamic and hydromagnetic stability of the Couette flow52 915–935 (2009)
    47.20.Qr, 47.65.−d, 52.30.Cv (all)
  14. 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)
  15. 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)
  16. 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)
  17. A.M. Bykov, I.N. Toptygin “Particle kinetics in highly turbulent plasmas (renormalization and self-consistent field methods)36 (11) 1020–1052 (1993)
    52.35.Ra, 52.25.Fi, 52.25.Gj, 52.25.Vy, 52.30.Cv, 52.65.Vv (all)
  18. V.I. Petviashvili “Nonlinear and relativistic effects in plasma35 (10) 902–902 (1992)
    01.30.Vv, 52.35.Mw, 52.35.Hr, 52.35.Qz, 52.35.Ra (all)
  19. B.A. Trubnikov “Constrictions in a relativistic pinch with a longitudinal magnetic field34 (11) 1018–1020 (1991)
    52.27.Ny, 52.58.Lq, 52.65.Kj, 52.80.−s (all)
  20. A.A. Vedenov, E.P. Velikhov et alFeliks Romanovich Ulinich (Obituary)34 (3) 276–277 (1991)
    01.60.+q, 52.30.Cv, 52.25.Kn, 52.55.−s, 73.43.−f, 03.75.−b (all)
  21. 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)
  22. A.I. Morozov “Development of the principles of a quasi-steady-state plasma accelerator with an intrinsic magnetic field with a power of 109-1011 W33 (7) 576–577 (1990)
    52.59.−f, 52.65.Kj, 52.25.Xz, 52.55.Fa, 52.30.−q (all)
  23. V.E. Zakharov “Wave collapse31 672–674 (1988)
    52.35.Sb, 52.35.Mw, 52.35.Ra, 52.35.Tc, 52.35.Fp, 52.25.Kn (all)
  24. 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)
  25. 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)
  26. A.V. Gurevich, R.G. Mints “Localized waves in inhomogeneous media27 19–41 (1984)
    74.25.Fy, 52.35.Mw (all)
  27. G.A. Markov “Demonstration of the self-focusing of plasma waves26 927–928 (1983)
    01.50.My, 52.35.Mw, 52.80.Vp (all)
  28. V.P. Kovalenko “Electron bunches in nonlinear collective beam-plasma interaction26 116–137 (1983)
    52.40.Mj, 52.35.Mw (all)
  29. P.S. Landa, N.A. Miskinova, Yu.V. Ponomarev “lonization waves in low-temperature plasmas23 813–834 (1980)
    52.35.Py, 52.35.Bj, 52.35.Mw (all)
  30. M.D. Gabovich “Ion-beam plasma and the propagation of intense compensated ion beams20 134–148 (1977)
    52.50.Dg, 52.40.Mj, 52.35.Mw (all)
  31. K.G. Ivanov “Structure of the Typical Nonstationary Stream of Interplanetary Plasma from Direct Measurements17 807–809 (1975)
    96.50.Ci, 96.50.Qx, 96.50.Fm, 96.50.Tf, 96.50.Ek, 96.60.qe (all)
  32. G.M. Zaslavskii “Nonlinear waves and their interaction16 761–776 (1974)
    52.35.Mw, 52.25.Dg, 52.65.Vv (all)
  33. S.M. Osovets “Dynamic methods of confinement and stabilization of hot plasma17 239–262 (1974)
    52.58.Lq, 52.25.−b, 52.35.Py, 52.30.−q, 52.65.Kj (all)
  34. V.P. Silin “Anomalous nonlinear dissipation of high-frequency radio waves in plasma15 742–758 (1973)
    52.35.Mw, 52.35.Hr, 52.35.Py, 52.25.Fi, 52.25.Gj, 52.35.Ra (all)
  35. L.M. Gorbunov “Hydrodynamics of plasma in a strong high-frequency field16 217–235 (1973)
    52.35.Py, 52.35.Hr, 52.35.Mw (all)
  36. V.P. Silin “Anomalous Nonlinear Dissipation of UHF Waves in a Plasma14 538–540 (1972)
    52.35.Mw, 52.35.Qz, 52.35.Ra (all)
  37. A.G. Sitenko “All-union conference on plasma theory15 356–364 (1972)
    52.25.Fi, 52.35.Fp, 52.35.Tc, 52.35.Mw, 52.25.Os (all)
  38. F.G. Bass, Yu.G. Gurevich “Nonlinear theory of the propagation of electromagnetic waves in a Solid-state plasma and in a Gaseous discharge14 113–124 (1971)
    52.35.Mw, 52.35.Hr, 52.25.Dg, 72.30.+q, 72.20.Ht (all)
  39. B.B. Kadomtsev, V.I. Karpman “NONLINEAR WAVES14 40–60 (1971)
    52.35.Mw, 52.35.Sb, 52.35.Tc, 52.35.Ra (all)
  40. M.A. Gintsburg “Nonlinear Waves in Cosmic Plasma12 692–692 (1970)
    96.50.Tf, 52.30.Cv, 52.65.Kj, 52.35.Mw (all)
  41. S.A. Kaplan, V.N. Tsytovich “Plasma radiation mechanisms in astrophysics12 42–63 (1969)
    96.50.Tf, 98.54.Aj, 96.60.P− (all)
  42. B.B. Kadomtsev “Landau damping and echo in a plasma11 328–337 (1968)
    52.35.Fp, 52.35.Mw (all)
  43. V.N. Tsytovich “Nonlinear effects in a plasma9 805–836 (1967)
    52.35.Mw, 52.35.Ra, 52.35.Fp, 52.40.Db, 52.25.Dg, 52.25.Os (all)
  44. V.N. Tsytovich “Statistical acceleration of particles in a turbulent plasma9 370–404 (1966)
    52.35.Ra, 52.35.Mw (all)
  45. L.A. Artsimovich “Present state of research in controlled thermonuclear reactions5 1–6 (1962)
    52.35.Py, 52.75.−d, 52.55.Ez, 52.55.Hc, 25.60.Pj, 52.65.Kj (all)
  46. 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)
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