PACS numbers

04.20.Cv Fundamental problems and general formalism 04.70.Bw Classical black holes 47.10.A− Mathematical formulations 47.10.ad Navier-Stokes equations 97.10.Gz Accretion and accretion disks
  1. N.I. Shakura, K.A. Postnov et alMagnetorotational instability in Keplerian disks: a nonlocal approach66 1262–1276 (2023)
    95.30.Qd, 97.10.Gz (all)
  2. S.N. Vergeles, N.N. Nikolaev et alGeneral relativity effects in precision spin experimental tests of fundamental symmetries66 109–147 (2023)
    03.65.Sq, 04.20.Cv, 04.62.+v, 11.30.Fs, 12.60.−i, 14.80.Va, 29.20.db, 29.27.Hj (all)
  3. V.I. Dokuchaev, N.O. Nazarova “Silhouettes of invisible black holes63 583–600 (2020)
    04.70.Bw, 98.35.Jk, 98.62.Js (all)
  4. D.V. Bisikalo, A.G. Zhilkin, E.P. Kurbatov “Possible electromagnetic manifestations of merging black holes62 1136–1152 (2019)
    04.30.Tv, 97.10.Gz, 97.80.−d (all)
  5. K.P. Zybin, A.S. Il’yn “Properties of turbulence driven by random external force in the Burgers model59 1241–1244 (2016)
    05.40.−a, 47.10.ad, 47.27.E− (all)
  6. D.N. Razdoburdin, V.V. Zhuravlev “Transient dynamics of perturbations in astrophysical disks58 1031–1058 (2015)
    02.30.−f, 02.60.Pn, 47.32.C−, 97.10.Gz, 97.82.Jw, 98.62.Mw (all)
  7. V.V. Zhuravlev “Analytical models of relativistic accretion disks58 527–555 (2015)
    04.20.Cv, 04.70.Bw, 47.10.A−, 47.10.ad, 97.10.Gz (all)
  8. K.P. Zybin, V.A. Sirota “Stretching vortex filaments model and the grounds of statistical theory of turbulence58 556–573 (2015)
    47.10.ad, 47.27.Jv (all)
  9. A.M. Cherepashchuk “Black holes in binary stellar systems and galactic nuclei57 359–376 (2014)
    04.70.Bw, 97.60.Jd, 98.54.−h (all)
  10. M.R. Gilfanov, R.A. Sunyaev “Radiation-dominated boundary layer between an accretion disc and the surface of a neutron star: theory and observations57 377–388 (2014)
    97.10.Gz, 97.60.Jd, 97.80.−d (all)
  11. N.I. Shakura “Academician Zeldovich and the foundations of disk accretion57 407–412 (2014)
    04.25.dg, 97.10.Gz, 97.60.Jd (all)
  12. E.O. Babichev, V.I. Dokuchaev, Yu.N. Eroshenko “Black holes in the presence of dark energy56 1155–1175 (2013)
    04.70.Bw, 04.70.Dy, 95.36.+x, 98.80.Cq (all)
  13. N.I. Shakura, K.A. Postnov et alQuasi-spherical subsonic accretion in X-ray pulsars56 321–346 (2013)
    95.30.Lz, 97.10.Gz, 97.80.Jp, 98.70.Qy (all)
  14. A.G. Zhilkin, D.V. Bisikalo, A.A. Boyarchuk “Flow structure in magnetic close binary stars55 115–136 (2012)
    52.30.−q, 97.10.Gz, 97.80.−d (all)
  15. G.I. Broman, O.V. Rudenko “Submerged Landau jet: exact solutions, their meaning and application53 91–98 (2010)
    43.25.Nm, 47.10.ad, 47.10.−g, 47.15.Uv, 47.60.Kz (all)
  16. A.A. Grib, Yu.V. Pavlov “Is it possible to see the infinite future of the Universe when falling into a black hole?52 257–261 (2009)
    04.70.−s, 04.70.Bw, 97.60.Lf (all)
  17. A.M. Fridman, D.V. Bisikalo “The nature of accretion disks of close binary stars: overreflection instability and developed turbulence51 551–576 (2008)
    47.27.−i, 97.10.Gz, 97.80.−d (all)
  18. S.S. Gershtein, A.A. Logunov, M.A. Mestvirishvili “Gravitational field self-limitation and its role in the Universe49 1179–1195 (2006)
    04.20.−q, 04.70.Bw, 98.80.−k (all)
  19. A.A. Logunov, M.A. Mestvirishvili, V.A. Petrov “How were the Hilbert-Einstein equations discovered?47 607–621 (2004)
    01.65.+g, 04.20.Cv, 04.20.Fy (all)
  20. V.S. Beskin “Axisymmetric steady flows in astrophysics46 1209–1214 (2003)
    04.70.−s, 95.30.Qd, 97.10.Gz (all)
  21. V.L. Ginzburg, Yu.N. Eroshenko “Paper by V L Ginzburg and Yu N Eroshenko ’Once again about the equivalence principle’ [Physics-Uspekhi, February 1995, 38 (2) 195-201]39 1275–1275 (1996)
    04.20.−q, 04.20.Cv (all)
  22. A.A. Logunov, M.A. Mestvirishvili, Yu.V. Chugreev “On incorrect formulations of the equivalence principle39 73–79 (1996)
    04.20.−q, 04.20.Cv (all)
  23. V.L. Ginzburg, Yu.N. Eroshenko “Comments on the paper by A A Logunov et al.39 81–82 (1996)
    04.20.−q, 04.20.Cv (all)
  24. V.L. Ginzburg, Yu.N. Eroshenko “Once again about the equivalence principle38 195–201 (1995)
    04.20.−q, 04.20.Cv (all)
  25. S.P. Bakanov “Thermophoresis in gases at small Knudsen numbers35 (9) 783–792 (1992)
    47.45.Ab, 47.10.ad, 47.45.Gx (all)
  26. A.M. Fridman “Modified criterion for the Landau stabilization of the instability of a tangential velocity discontinuity in a compressible medium33 (10) 865–867 (1990)
    47.20.−k, 47.40.Dc, 47.40.Ki, 47.10.A− (all)
  27. 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)
  28. A.A. Logunov, Yu.M. Loskutov, M.A. Mestvirishvili “The relativistic theory of gravitation and its consequences31 581–596 (1988)
    04.20.Cv, 95.30.Sf, 98.80.−k (all)
  29. I.M. Kopylov “Spectral observations of binary systems with relativistic companions using the six-meter telescope29 981–983 (1986)
    97.20.Pm, 97.80.Jp, 97.10.Ri, 97.10.Gz, 97.10.Ex (all)
  30. S.A. Molchanov, A.A. Ruzmaikin, D.D. Sokolov “Kinematic dynamo in random flow28 307–327 (1985)
    47.65.−d, 47.27.Jv, 47.10.A− (all)
  31. V.P. Vizgin, Ya.A. Smorodinskii “From the equivalence principle to the equations of gravitation22 489–513 (1979)
    04.20.Cv, 04.50.+h, 01.60.+q (all)
  32. S.G. Suvorov “Einstein: the creation of the theory of relativity and some gnosiological lessons22 528–554 (1979)
    04.20.Cv, 01.60.+q (all)
  33. 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)
  34. V.N. Pokrovskii “Stresses, viscosity, and optical anisotropy of a Moving suspension of rigid ellipsoids14 737–746 (1972)
    82.70.Kj, 66.20.+d, 47.10.ad, 78.20.Ci (all)
  35. Ya.B. Zel’dovich, I.D. Novikov “Relativistic astrophysics. II8 522–577 (1966)
    97.10.Kc, 97.10.Cv, 97.10.Gz, 97.60.Jd, 95.30.Qd, 98.54.Aj (all)
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