PACS numbers

61.25.Mv Liquid metals and alloys 61.43.−j Disordered solids 62.50.+p High-pressure and shock wave effects in solids and liquids 66.20.+d Viscosity of liquids; diffusive momentum transport 91.35.Ed Structure of the Earth’s interior below the upper mantle
  1. N.P. Kobelev, V.A. Khonik “A novel view of the nature of formation of metallic glasses, their structural relaxation, and crystallization66 673–690 (2023)
    61.43.−j, 61.72.J−, 81.05.Kf (all)
  2. B.A. Klumov “Universal structural properties of three-dimensional and two-dimensional melts66 288–311 (2023)
    61.20.Ja, 61.25.Mv, 61.43.−j (all)
  3. M.N. Sapozhnikov “Fifty years of selective laser spectroscopy of solids: a history, general principles and applications61 (4) (2018)
    42.62.−b, 42.62.Fi, 61.43.−j, 61.72.−y, 63.20.kp, 78.20.−e, 78.40.Me, 78.55.−m, 78.66.−w, 87.15.−v, 87.15.M− (all)
  4. A.I. Gusev “Nonstoichiometry and superstructures57 839–876 (2014)
    61.43.−j, 61.50.Ah, 61.50.Ks, 61.66.Fn, 61.72.jd, 61.72.jj (all)
  5. D.K. Belashchenko “Computer simulation of liquid metals56 1176–1216 (2013)
    02.70.−c, 61.25.Mv (all)
  6. A.V. Naumov “Low temperature spectroscopy of organic molecules in solid matrices: from the Shpolsky effect to the laser luminescent spectromicroscopy for all effectively emitting single molecules56 605–622 (2013)
    42.30.−d, 42.62.−b, 61.43.−j, 61.72.−y, 78.20.−e, 78.47.−p, 78.55.−m (all)
  7. V.V. Brazhkin ““Lost in Translation”: what do the negative values of effective Grüneisen coefficients mean in shock wave experiments? [Extended comment on “Shock compression of porous metals and silicates” by A B Medvedev and R F Trunin, Phys. Usp. 55 773 (2012)]55 790–795 (2012)
    61.43.−j, 62.50.−p, 64.60.My, 65.60.+a, 91.35.−x, 91.40.Qa (all)
  8. A.M. Glezer “Creation principles of new-generation multifunctional structural materials55 522–529 (2012)
    61.43.−j, 61.46.+w, 62.50.−p (all)
  9. 50 years of the Condensed Matter Physics Research Council of the Russian Academy of Sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 9 November 2011)55 522–529 (2012)
    01.10.Fv, 61.43.−j, 61.46.+w, 62.50.−p (all)
  10. V.A. Gritsenko “Structure of silicon/oxide and nitride/oxide interfaces52 869–877 (2009)
    61.43.−j, 61.66.Fn, 68.35.Dv, 71.55.Jv (all)
  11. V.I. Balykin, A.N. Ryabtsev et alOn the 40th anniversary of the Institute of Spectroscopy of the Russian Academy of Sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 8 October 2008)52 275–309 (2009)
    03.75.−b, 03.75.Hh, 05.30.Jp, 07.07.−a, 32.30.−r, 32.30.Jc, 33.20.−t, 36.40.−c, 37.20.+j, 42.82.Cr, 61.43.−j, 63.20.−e, 63.50.−x, 67.25.dw, 71.35.Lk, 71.36.+c, 78.30.−j, 78.47.−p, 78.55.−m, 81.07.−b, 87.85.fk, 87.64.−t, 95.30.Ky, 97.10.−q (all)
  12. A.V. Naumov, Yu.G. Vainer “Single molecules as spectral nanoprobes for the diagnostics of dynamic processes in solid media52 298–304 (2009)
    61.43.−j, 78.47.−p, 78.55.−m (all)
  13. L.N. Dzhavadov, E.L. Gromnitskaya et alStudies of the thermodynamic, elastic, superconducting, and magnetic properties of substances at high pressures51 1066–1070 (2008)
    61.50.Ks, 62.50.+p, 74.70.−b (all)
  14. L.V. Spivak “Synergy effects in the deformation response of thermodynamically open metal — hydrogen systems51 863–885 (2008)
    61.43.−j, 61.72.−y, 62.20.−x, 81.05.Bx (all)
  15. V.A. Gritsenko “Atomic structure of the amorphous nonstoichiometric silicon oxides and nitrides51 699–708 (2008)
    33.60.Fy, 61.43.−j, 61.66.Fn, 68.35.Dv, 71.55.Jv (all)
  16. G.I. Kanel, V.E. Fortov, S.V. Razorenov “Shock waves in condensed-state physics50 771–791 (2007)
    52.25.−b, 52.35.Tc, 62.50.+p, 64 (all)
  17. V.F. Degtyareva “Simple metals at high pressures: the Fermi sphere-Brillouin zone interaction model49 369–388 (2006)
    61.50.Ks, 61.66.Bi, 62.50.+p (all)
  18. E.N. Avrorin, V.A. Simonenko, L.I. Shibarshov “Physics research during nuclear explosions49 432–437 (2006)
    01.10.Fv, 28.70.+y, 47.40.−x, 62.50.+p (all)
  19. E.G. Maksimov, M.V. Magnitskaya, V.E. Fortov “Non-simple behavior of simple metals at high pressure48 761–780 (2005)
    61.50.Ah, 62.50.+p, 61.66.−f, 71.15.Mb (all)
  20. B.A. Klumov, V.V. Kim et alDeep Impact experiment: possible observable effects48 733–742 (2005)
    47.40.−x, 62.50.+p, 82.20.Wt, 96.35.−j, 96.50.Gn (all)
  21. V.N. Mineev, A.I. Funtikov “Viscosity measurements on metal melts at high pressure and viscosity calculations for the earth’s core47 671–686 (2004)
    62.50.+p, 66.20.+d, 81.30.Bx, 91.35.−x (all)
  22. Yu.G. Vainer “Single-molecule spectroscopy and disordered solid dynamics47 623–626 (2004)
    33.20.−t, 61.43.−j, 63.50.+x (all)
  23. A.V. Belushkin “Novel approaches to the analysis of crystal structure. A nonstandard method for the study of atomic and molecular diffusion mechanisms46 1219–1223 (2003)
    61.12.−q, 61.43.−j, 66.30.−h (all)
  24. R. Folk, Yu. Holovatch, T. Yavorskii “Critical exponents of a three-dimensional weakly diluted quenched Ising model46 169–191 (2003)
    11.10.Gh, 61.43.−j, 64.60.Ak (all)
  25. G.V. Kozlov, V.U. Novikov “A cluster model for the polymer amorphous state44 681–724 (2001)
    61.41.+e, 61.43.−j, 61.43.Bn, 61.43.Hv, 61.46.+w (all)
  26. R.F. Trunin “Shock compression of condensed materials (laboratory studies)44 371–396 (2001)
    07.35.+k, 62.50.+p, 91.60.Gf (all)
  27. V.V. Brazhkin, A.G. Lyapin “Universal viscosity growth in metallic melts at megabar pressures: the vitreous state of the Earth’s inner core43 493–508 (2000)
    61.25.Mv, 61.43.−j, 62.50.+p, 66.20.+d, 91.35.Ed (all)
  28. A.G. Lyapin, V.V. Brazhkin et alTransformations in amorphous solids under high pressures42 1059–1062 (1999)
    62.50.+p, 62.20.Dc, 64.70.Kb, 64.70.Pf (all)
  29. D.K. Belashchenko “Diffusion mechanisms in disordered systems: computer simulation42 297–319 (1999)
    61.43.−j, 61.43.Er, 66.30.−h (all)
  30. I.L. Fabelinskii “Macroscopic and molecular shear viscosity40 689–700 (1997)
    61.20.Gy, 61.25.Em, 66.20.+d (all)
  31. M.P. Lorikyan “Detectors of nuclear radiation and multiply charged particles with porous dielectric working media38 1271–1281 (1995)
    29.40.Wk, 79.20.Hx, 61.43.−j (all)
  32. G.M. Arutyunyan, V.I. Gol’danskii et alSergei Petrovich D’yakov and his contributions to science36 (9) 858–864 (1993)
    01.60.+q, 62.50.+p, 01.10.Cr, 66.20.+d (all)
  33. E.N. Avrorin, B.K. Vodolaga et alIntense shock waves and extreme states of matter36 (5) 337–364 (1993)
    62.50.+p, 64.60.Cn, 82.33.Vx, 81.30.Bx (all)
  34. Zh.I. Alferov, B.K. Vainshtein et alIsaak Mikhailovich Tsidil’kovskii (on his seventieth birthday)36 (5) 450–451 (1993)
    01.60.+q, 72.20.My, 72.20.Jv, 62.50.+p, 78.20.Ls, 74.72.−h (all)
  35. O.V. Rudenko, B.B. Voronov, A.I. Korobov “Nonlinear acoustic waves in media with absorption and dispersion35 (9) 796–804 (1992)
    43.25.Dc, 43.25.Yw, 43.28.Mw, 62.50.+p, 62.65.+k, 62.60.+v (all)
  36. B.M. Smirnov “Similarity laws in disordered condensed systems32 736–736 (1989)
    64.60.Ak, 61.43.−j (all)
  37. A.Z. Dolginov “Origin of the magnetic fields of the earth and celestial bodies30 475–493 (1987)
    97.30.Fi, 91.25.−r, 96.60.Hv, 97.20.Ec, 91.35.Ed (all)
  38. A.F. Goncharov “Stability of diamond at high pressures30 525–534 (1987)
    81.30.Dz, 62.50.+p (all)
  39. V.M. Svistunov, M.A. Belogolovskii, O.I. Chernyak “Tunnel investigations of metals at high pressures30 1–22 (1987)
    62.50.+p, 74.45.+c, 74.25.Kc, 74.62.Fj, 74.50.+r, 74.25.Dw (all)
  40. V.V. Brazhkin, V.I. Larchev et alMetallic glasses and amorphous semiconductors, obtained by quenching from the melt under high pressure29 1066–1068 (1986)
    62.50.+p, 81.40.Gh (all)
  41. V.E. Antonov, I.T. Belash, E.G. Ponyatovskii “Hydrides: investigations under high hydrogen pressures29 1068–1069 (1986)
    62.50.+p, 75.30.Cr, 75.30.Kz, 74.62.Fj (all)
  42. I.L. Fabelinskii, S.V. Krivokhizha, L.L. Chaikov “Experimental studies of solutions with a ’double’ critical point29 572–573 (1986)
    66.20.+d, 64.60.Fr (all)
  43. E.G. Ponyatovskii, V.E. Antonov, I.T. Belash “Properties of high pressure phases in metal-hydrogen systems25 596–619 (1982)
    74.70.Lp, 75.30.Et, 64.70.Kb, 62.50.+p (all)
  44. S.M. Stishov “Recent events in the physics of high pressures22 283–285 (1979)
    62.50.+p, 71.30.+h, 07.35.+k (all)
  45. V.N. Mineev, A.G. Ivanov “Electromotive force produced by shock compression of a substance19 400–419 (1976)
    62.50.+p
  46. 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)
  47. V.E. Ivanov, Ya.B. Fainberg et alALEKSANDR IL’ICH AKHIEZER (In commemoration of his 60th birthday)14 671–672 (1972)
    72.55.+s, 62.65.+k, 62.50.+p, 01.60.+q (all)
  48. N.B. Brandt, E.S. Itskevich, N.Ya. Minina “Influence of pressure on the Fermi surface of metals14 438–454 (1972)
    71.18.+y, 62.50.+p (all)
  49. F.F. Voronov “The Effect of Pressure on the Elastic Moduli of Solids14 545–545 (1972)
    62.20.Dc, 62.50.+p, 64.70.Kb, 62.20.Fe, 63.70.+h (all)
  50. L.V. Al’tshuler “Progress in High-pressure Physics13 301–303 (1970)
    62.50.+p, 61.50.Ks, 71.20.Be, 71.20.Dg, 71.20.Eh, 81.40.Jj (all)
  51. V.B. Deryagin “New Data on Superdense Water13 305–306 (1970)
    66.20.+d, 68.03.Cd, 65.20.+w (all)
  52. A.I. Voropinov, G.M. Gandel’man, V.G. Podval’nyi “Electronic energy spectra and the equation of state of solids at high pressures and temperatures13 56–72 (1970)
    71.20.Be, 64.30.+t, 62.50.+p, 71.20.Dg, 71.15.Mb (all)
  53. S.M. Stishov “Melting at high pressures11 816–830 (1969)
    64.70.Dv, 62.50.+p (all)
  54. L.V. Al’tshuler, A.A. Bakanova “Electronic structure and compressibility of metals at high pressures11 678–689 (1969)
    71.20.Be, 71.20.Dg, 71.20.Eh, 62.50.+p, 62.20.Fe, 81.40.Lm (all)
  55. V.Ya. Kark “Lecture demonstrations of shock waves in a liquid12 146–146 (1969)
    62.50.+p
  56. S.B. Kormer “Optical study of the characteristics of shock-compressed condensed dielectrics11 229–254 (1968)
    78.20.Ci, 62.50.+p, 77.84.Nh, 64.70.Dv, 78.60.Fi, 62.30.+d (all)
  57. I.L. Fabelinskii “Study of the fine structure of the lines of scattered light and the propagation of hypersound8 637–641 (1966)
    78.35.+c, 62.60.+v, 62.65.+k, 66.20.+d (all)
  58. V.V. Evdokimova “Some relationships governing the P-T phase diagrams and polymorphic transformations of elements under high pressures9 54–72 (1966)
    81.30.Bx, 81.30.Hd, 62.50.+p (all)
  59. N.B. Brandt, N.I. Ginzburg “Effect of high pressure on the superconducting properties of metals8 202–223 (1965)
    74.62.Fj, 74.25.Op, 62.50.+p (all)
  60. E.I. Zababakhin “Cumulation of energy and its limits8 295–298 (1965)
    47.55.dp, 47.55.dr, 47.40.Nm, 66.20.+d (all)
  61. L.V. Al’tshuler “Use of shock waves in high-pressure physics8 52–91 (1965)
    62.50.+p, 64.10.+h (all)
  62. I.M. Lifshitz, M.I. Kaganov “Some problems of the electron theory of metals II. Statistical mechanics and thermodynamics of electrons in metals5 878–907 (1963)
    71.18.+y, 71.20.−b, 65.40.Ba, 62.50.+p (all)
  63. I.L. Fabelinskii “Some results of the experimental study of the fine structure of Rayleigh scattering lines in liquids of various viscosities5 667–674 (1963)
    78.35.+c, 61.20.−p, 66.20.+d (all)
  64. I.Z. Fisher “Present state of the theory of liquids5 239–250 (1962)
    61.20.Ne, 66.20.+d (all)
  65. V.P. Peshkov, K.N. Zinov’eva “Experimental research with He32 82–118 (1959)
    67.57.−z, 07.20.Mc, 67.80.Gb, 67.80.Jd, 66.20.+d (all)
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