PACS numbers

64.30.+t Equations of state of specific substances 71.20.−b Electron density of states and band structure of crystalline solids 71.30.+h Metal-insulator transitions and other electronic transitions 74.25.−q Properties of superconductors
  1. Yu.S. Orlov, S.V. Nikolaev et alFeatures of spin crossovers in magnetic materials66 647–672 (2023)
    71.30.+h, 75.30.Cr, 75.30.Et, 75.47.Lx, 75.50.Pp (all)
  2. A.V. Sadakov, O.A. Sobolevsky, V.M. Pudalov “What led to retraction of the article on room-temperature superconductivity in the journal Nature: a series of oversights or falsification?65 1313–1316 (2022)
    74.25.−q, 74.70.−b, 99.10.−x (all)
  3. T.K. Kim, K.S. Pervakov et alNovel magnetic stoichiometric superconductor compound EuRbFe4As465 740–747 (2022)
    74.25.−q, 74.25.Ha, 74.70.−b (all)
  4. I.A. Troyan, D.V. Semenok et alHigh-temperature superconductivity in hydrides65 748–761 (2022)
    74.25.−q, 74.70.−b (all)
  5. A.L. Khomkin, A.S. Shumikhin “Supercritical fluid of metal vapor plasmas, rare gases, and excitons64 1125–1148 (2021)
    52.25.Kn, 52.27.Gr, 64.10.+h, 64.60.F−, 64.70.F−, 71.30.+h, 72.15.−v (all)
  6. S.I. Vedeneev “Pseudogap problem in high-temperature superconductors64 890–922 (2021)
    74.20.Mn, 74.25.−q, 74.25.Jb, 74.72.−h (all)
  7. K.V. Reich “Conductivity of quantum dot arrays63 994–1014 (2020)
    71.30.+h, 72.10.−d, 72.15.Rn, 72.20.Ee, 72.80.Ng, 73.21.La, 73.22.−f, 73.23.Hk, 73.40.Gk, 81.07.Bc (all)
  8. V.T. Dolgopolov “Two-dimensional system of strongly interacting electrons in silicon (100) structures62 633–648 (2019)
    71.27.+a, 71.30.+h, 73.20.−r (all)
  9. V.A. Gasparov “High frequency size effect study of the Fermi surface of metals61 289–302 (2018)
    71.10.Ca, 71.15.−m, 71.20.−b, 72.10.−d (all)
  10. G.E. Volovik “Exotic Lifshitz transitions in topological materials61 89–98 (2018)
    04.70.−s, 71.30.+h, 73.22.−f (all)
  11. T.E. Kuzmicheva, A.V. Muratov et alOn the structure of the superconducting order parameter in high-temperature Fe-based superconductors60 419–429 (2017)
    74.25.−q, 74.25.nd, 74.25.Ha, 74.45.+c, 74.70.Xa (all)
  12. M.M. Korshunov, Yu.N. Togushova, O.V. Dolgov “Impurities in multiband superconductors59 1211–1240 (2016)
    74.20.Rp, 74.25.−q, 74.62.Dh (all)
  13. Superconductivity in iron-based compounds (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 29 January 2014)57 807–832 (2014)
    01.10.Fv, 74.25.−q, 74.70.Xa (all)
  14. I.M. Eremin “Antiferromagnetism in iron-based superconductors: magnetic order in the model of delocalized electrons57 807–813 (2014)
    74.20.Mn, 74.25.−q, 74.70.Xa (all)
  15. M.M. Korshunov “Superconducting state in iron-based materials and spin-fluctuation pairing theory57 813–819 (2014)
    74.20.Rp, 74.25.−q, 74.62.Dh (all)
  16. T.E. Kuzmicheva, S.A. Kuzmichev et alAndreev spectroscopy of iron-based superconductors: temperature dependence of the order parameters and scaling of ⊿L, S with TC57 819–827 (2014)
    74.25.−q, 74.45.+c, 74.62.Dh, 74.70.Xa (all)
  17. Yu.F. Eltsev, K.S. Pervakov et alMagnetic and transport properties of single crystals of Fe-based superconductors of 122 family57 827–832 (2014)
    74.25.−q, 74.45.+c, 74.70.−b (all)
  18. V.T. Dolgopolov “Manifestation of interactions in the transport properties of low-dimensional electronic systems57 (7) (2014)
    71.30.+h, 73.40.Qv (all)
  19. V.T. Dolgopolov “Integer quantum Hall effect and related phenomena57 105–127 (2014)
    71.30.+h, 73.40.Qv, 73.43.−f (all)
  20. N.B. Brandt “The best years of my life56 192–198 (2013)
    01.60.+q, 01.65.+g, 74.25.−q (all)
  21. The 100th anniversary of the birth of N E Alekseevskii (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 23 May 2012)56 192–210 (2013)
    01.10.Fv, 01.60.+q, 01.65.+g, 07.55.Db, 71.18.+y, 72.20.My, 74.25.−q, 84.71.Ba (all)
  22. E.P. Krasnoperov “At the origins of applied superconductivity56 202–204 (2013)
    01.60.+q, 01.65.+g, 74.25.−q (all)
  23. E.Z. Kuchinskii, I.A. Nekrasov, M.V. Sadovskii “Generalized dynamical mean-field theory in the physics of strongly correlated systems55 325–355 (2012)
    71.10.Fd, 71.10.Hf, 71.20.−b, 71.27.+a, 71.30.+h, 72.15.Rn, 74.72.−h (all)
  24. V.M. Pudalov, O.E. Omel’yanovskii et alV L Ginzburg and the development of experimental work on high-temperature superconductivity at LPI: ’iron superconductors’54 648–653 (2011)
    74.25.−q, 74.45.+c, 74.70.−b (all)
  25. Celebrating the 65th anniversary of the Russian Federal Nuclear Center — All-Russian Research Institute of Experimental Physics (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 6 October 2010)54 387–427 (2011)
    01.10.Fv, 01.65.+g, 05.70.Ce, 07.35.+k, 07.55.Db, 28.52.−s, 28.70.+y, 42.55.−f, 42.62.−b, 47.20.−k, 47.27.wj, 47.40.−x, 52.57.−z, 61.05.C−, 64.30.−t, 74.25.−q, 84.30.Ng, 84.70.+p, 85.70.−w (all)
  26. G.V. Boriskov, A.I. Bykov et alResearch in ultrahigh magnetic field physics54 421–427 (2011)
    07.55.Db, 64.30.−t, 74.25.−q (all)
  27. E.G. Maksimov “About Ginzburg — Landau, and a bit about others53 1185–1190 (2010)
    01.65.+g, 74.20.−z, 74.25.−q (all)
  28. Yu.V. Kopaev “Toroidal ordering in crystals52 1111–1125 (2009)
    01.30.Bb, 71.30.+h, 75.10.−b, 75.80.+q (all)
  29. I.S. Lyubutin, A.G. Gavriliuk “Research on phase transformations in 3d-metal oxides at high and ultrahigh pressure: state of the art52 989–1017 (2009)
    07.35.+k, 51.70.+f, 61.50.Ks, 64.30.−t, 64.60.−i, 71.30.+h, 81.40.Rs (all)
  30. N.B. Ivanova, S.G. Ovchinnikov et alSpecific features of spin, charge, and orbital ordering in cobaltites52 789–810 (2009)
    71.30.+h, 75.30.Cr, 75.50.Pp (all)
  31. M.V. Sadovskii “High-temperature superconductivity in iron-based layered compounds51 1201–1227 (2008)
    74.20.−z, 74.25.−q, 74.62.−c, 74.70.−b (all)
  32. A.L. Ivanovskii “New high-temperature superconductors based on rare-earth and transition metal oxyarsenides and related phases: synthesis, properties, and simulations51 1229–1260 (2008)
    74.10.+v, 74.20.−z, 74.25.−q, 74.70.Dd (all)
  33. Yu.A. Izyumov, E.Z. Kurmaev “FeAs systems: a new class of high-temperature superconductors51 1261–1286 (2008)
    74.20.−z, 74.25.−q, 74.62.−c, 74.70.−b (all)
  34. V.F. Gantmakher, V.T. Dolgopolov “Localized-delocalized electron quantum phase transitions51 3–22 (2008)
    71.30.+h, 72.15.Rn, 73.43.Nq (all)
  35. Yu.A. Izyumov, E.Z. Kurmaev “Materials with strong electron correlations51 23–56 (2008)
    71.27.+a, 71.30.+h, 74.72.−h, 75.10.−b, 75.30.−m (all)
  36. N.A. Tulina “Colossal electroresistance and electron instability in strongly correlated electron systems50 1171–1178 (2007)
    71.10.−w, 71.27.+a, 71.30.+h, 73.40.−c, 74.62.Dh (all)
  37. I.N. Askerzade “Ginzburg-Landau theory: the case of two-band superconductors49 1003–1016 (2006)
    74.20.De, 74.25.−q, 74.70.Ad (all)
  38. V.M. Pudalov “Metal-insulator transitions and related phenomena in a strongly correlated two-dimensional electron system49 203–208 (2006)
    01.10.Fv, 71.27.+a, 71.30.+h, 72.15.Rn (all)
  39. E.B. Olshanetskii, V. Renard et alInteraction effects in the transport and magnetotransport of two-dimensional electrons in AlGaAs/GaAs and Si/SiGe heterojunctions49 211–216 (2006)
    01.10.Fv, 71.27.+a, 71.30.+h, 72.15.Rn (all)
  40. P.I. Arseev, S.V. Demishev et alStrongly correlated electron systems and quantum critical phenomena48 1071–1084 (2005)
    71.10.−w, 71.10.Hf, 71.27.+a, 71.30.+h (all)
  41. A.A. Shashkin “Metal-insulator transitions and the effects of electron-electron interactions in two-dimensional electron systems48 129–149 (2005)
    71.30.+h, 73.40.Qv, 73.43.−f (all)
  42. S.V. Zaitsev-Zotov “Finite-size effects in quasi-one-dimensional conductors with a charge-density wave47 533–554 (2004)
    71.30.+h, 71.45.Lr, 73.63.Nm (all)
  43. S.V. Demishev, V.N. Ryzhov, S.M. Stishov “Strongly correlated electron systems and quantum critical phenomena (11 April 2003, Troitsk, Moscow Region)47 401–407 (2004)
    71.10.+w, 71.10.Hf, 71.27.+a, 71.30.+h (all)
  44. A.I. Savvatimskii “Melting point of graphite and liquid carbon (Concerning the paper ’Experimental investigation of the thermal properties of carbon at high temperatures and moderate pressures’ by EI Asinovskii, A V Kirillin, and A V Kostanovskii)46 1295–1303 (2003)
    64.30.+t, 64.70.Dv (all)
  45. E.I. Asinovskii, A.V. Kirillin, A.V. Kostanovskii “Once more about the experimental investigation of the thermal properties of carbon46 1305–1306 (2003)
    64.30.+t, 64.70.Dv (all)
  46. V.F. Khirnyi, A.A. Kozlovskii “Nonlinear effects and domain instability in oxide ceramics46 657–663 (2003)
    72.15.−v, 74.25.−q, 74.72.−h (all)
  47. O.V. Misochko “Electronic Raman scattering in high-temperature superconductors46 373–392 (2003)
    74.25.−q, 74.25.Gz, 74.72.−h (all)
  48. V.F. Gantmakher “Chemical localization45 1165–1174 (2002)
    71.23.−k, 71.30.+h, 72.15.Rn (all)
  49. E.I. Asinovskii, A.V. Kirillin, A.V. Kostanovskii “Experimental investigation of the thermal properties of carbon at high temperatures and moderate pressures45 869–882 (2002)
    64.30.+t, 64.60.Kw, 64.70.Dv (all)
  50. M.V. Feigel’man, A.I. Larkin, M.A. Skvortsov “Quantum superconductor-metal transition in a proximity array44 99–104 (2001)
    71.30.+h, 73.23.Hk, 74.50.+r, 74.76.-w (all)
  51. J.M. Valles, J.A. Chervenak et alFluctuation effects in high sheet resistance superconducting films44 104–108 (2001)
    71.30.+h, 73.23.Hk, 74.50.+r, 74.76.-w (all)
  52. S. Okuma, M. Morita “Vortex states at low temperature in disordered thin and thick films of a-Mo$_x$Si$_{1-x}$44 108–113 (2001)
    71.30.+h, 73.23.Hk, 74.50.+r, 74.76.-w (all)
  53. V.A. Krupenin, A.B. Zorin et alMetallic single-electron transistor without traditional tunnel barriers44 113–116 (2001)
    71.30.+h, 73.23.Hk, 74.50.+r, 74.76.-w (all)
  54. M.V. Sadovskii “Pseudogap in high-temperature superconductors44 515–539 (2001)
    74.20.Mn, 74.72.−h, 74.25.−q, 74.25.Jb (all)
  55. A.A. Likal’ter “Critical points of condensation in Coulomb systems43 777–797 (2000)
    64.70.Fx, 71.30.+h, 71.35.Ee (all)
  56. V.L. Ginzburg “Superconductivity: the day before yesterday — yesterday — today — tomorrow43 573–583 (2000)
    74.20.−z, 74.25.−q, 74.72.−h, 74.90.+n (all)
  57. A.I. Golovashkin, A.P. Rusakov “Experimental studies of the thermal and electronic properties of Ba1-xKxBiO3 and other perovskite-like oxide HTSC systems43 184–187 (2000)
    74.25.−q, 74.72.−h (all)
  58. E.G. Maksimov, Yu.I. Shilov “Hydrogen at high pressure42 1121–1138 (1999)
    64.30.+t, 71.20.−b, 71.30.+h, 74.25.−q (all)
  59. S.A. Nemov, Yu.I. Ravich “Thallium dopant in lead chalcogenides: investigation methods and peculiarities41 735–759 (1998)
    71.20.−b, 71.55.−i, 74.70.−b, 78.90.+t (all)
  60. A.G. Zabrodskii “Coulomb gap and metal-insulator transitions in doped semiconductors41 722–726 (1998)
    71.30.+h
  61. A.F. Andreev “Superfluidity, superconductivity and magnetism in mesoscopics41 581–588 (1998)
    11.30.−j, 73.23.−b, 74.25.−q, 75.45.+j (all)
  62. L.B. Ioffe, A.J. Millis “Non-Fermi-liquid metals41 595 (1998)
    71.10.−w, 71.20.−b, 71.22.+i, 71.90.+q (all)
  63. A.A. Abrikosov “Resonant tunneling in high-Tc superconductors41 605–616 (1998)
    74.25.−q, 74.50.+r, 74.72.−h (all)
  64. V.M. Pudalov “The metal-insulator transition in a two-dimensional system at zero magnetic field41 211–214 (1998)
    71.30.+h, 74.20.Mn (all)
  65. V.F. Gantmakher “Superconductor-insulator transitions and insulators with localized pairs41 214–217 (1998)
    71.30.+h, 74.20.Mn (all)
  66. A. Gold “Superconductor-insulator transition in the disordered Bose condensate: a discussion of the mode-coupling approach41 217–220 (1998)
    71.30.+h, 74.20.Mn (all)
  67. A. Frydman, E.P. Price, R.C. Dynes “Mesoscopic phenomena in disordered superconductors41 220–223 (1998)
    71.30.+h, 74.20.Mn (all)
  68. A.N. Lavrov, V.F. Gantmakher “Low-temperature resistivity of underdoped cuprates41 223–226 (1998)
    71.30.+h, 74.20.Mn (all)
  69. A.D. Zaikin, D.S. Golubev et alQuantum fluctuations and dissipation in thin superconducting wires41 226–230 (1998)
    71.30.+h, 74.20.Mn (all)
  70. N.V. Anshukova, A.I. Golovashkin et alHTSCs with apical oxygen replaced by halogens40 843–847 (1997)
    74.20.Mn, 74.25.−q, 74.72.−h, 74.90.+n (all)
  71. L.S. Levitov, A.V. Shitov “Coulomb anomaly of tunnelling into a poor conductor39 847–847 (1996)
    71.27.+a, 71.30.+h (all)
  72. I.M. Suslov “Density of states near the localization threshold39 848–849 (1996)
    71.30.+h, 72.15.Rn (all)
  73. V.T. Dolgopolov “Percolation metal-dielectric transitions in two-dimensional electron systems39 398–401 (1996)
    01.10.Fv, 64.60.Ak, 71.30.+h, 73.30.+y (all)
  74. B.A. Nadykto “A semiempirical model for calculation of the energies of states of multielectron ions36 (9) 794–827 (1993)
    31.15.Ct, 32.10.−f, 64.30.+t, 62.20.Dc, 81.40.Jj (all)
  75. A.A. Likal’ter “Gaseous metals35 (7) 591–605 (1992)
    64.60.Ak, 64.60.Fr, 71.30.+h, 72.15.−v (all)
  76. A.F. Andreev, A.S. Borovik-Romanov et alNikolai Evgen’evich Alekseevskii (on his eightieth birthday)35 (6) 531–532 (1992)
    01.60.+q, 74.10.+v, 74.70.Ad, 74.25.−q (all)
  77. A.F. Andreev, N.G. Basov et alLeonid Veniaminovich Keldysh (On his sixtieth birthday)34 (4) 353–354 (1991)
    01.60.+q, 71.20.−b, 71.55.−i (all)
  78. V.G. Boiko, Kh.I. Mogel’ et alFeatures of metastable states in liquid-vapor phase transitions34 (2) 141–159 (1991)
    64.60.My, 64.70.Fx, 64.60.Fr, 64.30.+t, 64.70.Md (all)
  79. D.I. Khomskii “Advances in superconductivity33 (10) 879–879 (1990)
    01.30.Cc, 01.30.Vv, 74.25.−q, 84.71.Mn, 74.78.−w, 74.72.Jt (all)
  80. B.I. Belevtsev “Superconductivity and localization of electrons in disordered two-dimensional metal systems33 (1) 36–54 (1990)
    74.81.Bd, 74.25.Sv, 74.78.−w, 74.25.Fy, 71.30.+h (all)
  81. S.V. Vonsovskii, M.I. Katsnel’son “Single-electron density matrix and the metal-insulator criterion for crystalline solids32 720–722 (1989)
    71.15.−m, 71.20.−b (all)
  82. D.E. Khmel’nitskii “A modern monograph on the physics of disordered systems31 782–783 (1988)
    01.30.Vv, 71.23.An, 71.30.+h, 72.80.Ng, 78.30.Ly (all)
  83. I.I. Mazin “A school on the electronic structure of solids31 783–784 (1988)
    01.30.Vv, 71.20.−b, 71.15.Ap (all)
  84. V.I. Antropov, V.G. Vaks et alEffect of proximity of the Fermi level to singular points in the band structure on the kinetic and lattice properties of metals and alloys31 278–280 (1988)
    71.20.−b, 72.15.Eb, 65.40.De, 62.20.Dc, 71.15.−m (all)
  85. R.O. Zaitsev, E.V. Kuz’min, S.G. Ovchinnikov “Fundamental ideas on metal-dielectric transitions in 3d-metal compounds29 322–342 (1986)
    71.30.+h, 71.20.Ps, 75.30.Kz, 75.30.Cr, 71.45.Lr, 71.10.Fd (all)
  86. N.N. Kalitkin, V.B. Leonas, I.D. Rodionov “Models of extreme states of matter and their experimental verification28 844–845 (1985)
    64.30.+t, 65.40.−b (all)
  87. S.I. Anisimov, Yu.V. Petrov “Equation of state of molecular hydrogen in the megabar range, role of nonpair interactions28 845–847 (1985)
    64.30.+t
  88. L.V. Al’tshuler “Results of and prospects for experimental studies of extremal states of matter28 847–849 (1985)
    64.30.+t, 81.30.Bx, 65.40.−b (all)
  89. E.G. Maksimov “Use of computers in the physics of the condensed state.27 458–459 (1984)
    71.15.Dx, 71.15.Mb, 71.20.−b, 71.45.Gm, 72.15.Qm (all)
  90. A.I. Buzdin, L.N. Bulaevskii “Spin-Peierls transition in quasi-one-dimensional crystals23 409–417 (1980)
    71.30.+h, 75.30.Et (all)
  91. D.I. Khomskii “The problem of intermediate valency22 879–903 (1979)
    71.25.Tn, 71.30.+h
  92. S.M. Stishov “Recent events in the physics of high pressures22 283–285 (1979)
    62.50.+p, 71.30.+h, 07.35.+k (all)
  93. S.M. Stishov “Does metallic ammonium exist? (From old and new literature)21 719–720 (1978)
    61.60.+m, 61.55.Hg, 64.30.+t, 64.70.Hz (all)
  94. V.A. Kizel’, Yu.I. Krasilov, V.I. Burkov “Experimental studies of gyrotropy of crystals17 745–773 (1975)
    78.20.Ek, 61.66.Fn, 71.20.−b, 71.35.−y, 61.30.−v (all)
  95. L.N. Bulaevskii “Peierls structure transition in quasi-one-dimensional crystals18 131–150 (1975)
    71.30.+h, 71.28.+d, 78.20.Ci (all)
  96. I.B. Borovskii, E.Ya. Komarov “Assessment of the feasibility of appearance potential spectroscopy18 74–75 (1975)
    71.18.+y, 71.20.−b (all)
  97. V.V. Sobolev “Spectroscopy of Intrinsic Energy Levels of Solids17 456–457 (1974)
    71.20.Nr, 71.30.+h, 71.70.−d (all)
  98. O.M. Sumbaev, E.V. Petrovich et alUse of a Method of Small X-Ray Line Shifts to Investigate the Electronic Structure of Crystal Chemical Bonds17 463–464 (1974)
    71.20.−b
  99. V.A. Alekseev, E.G. Maksimov et alMetal-dielectric phase transitions (from materials of the First All-Union Conference on Metal-Dielectric Phase Transitions, Moscow, June 1972)17 118–123 (1974)
    01.30.Cc, 71.30.+h, 64.60.−i (all)
  100. A.A. Ovchinnikov, I.I. Ukrainskii, G.V. Kventsel’ “Theory of one-dimensional mott semiconductors and the electronic structure of long molecules having conjugated bonds15 575–591 (1973)
    71.20.Rv, 71.30.+h, 75.20.Ck (all)
  101. Yu.M. Kagan, E.G. Brovman “The Problem of Metallic Hydrogen14 809–811 (1972)
    64.30.+t, 63.20.Kr, 74.25.Kc (all)
  102. V.N. Andreev, A.G. Aronov, F.A. Chudnovskiĭ “The Phase Transformation in V2O3 in an Electric Field14 815–816 (1972)
    72.60.+g, 71.30.+h, 72.80.−r (all)
  103. Sh.M. Kogan “Does an electron fall in a metallic pipe?14 658–661 (1972)
    71.20.−b, 62.20.Fe, 81.40.Lm (all)
  104. V.A. Alekseev, A.A. Andreev, V.Ya. Prokhorenko “Electric Properties of Liquid Metals and Semiconductors15 139–158 (1972)
    72.15.Cz, 72.80.Ph, 64.70.Fx, 72.60.+g, 71.30.+h (all)
  105. A.B. Brandt, E.A. Svistova “Electronic transitions in strong magnetic fields13 370–383 (1970)
    72.15.Gd, 72.20.My, 71.30.+h, 72.80.Jc (all)
  106. 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)
  107. A.A. Abrikosov “Magnetic impurities in nonmagnetic metals12 168–181 (1969)
    75.30.Hx, 75.30.Mb, 72.10.Fk, 74.25.−q (all)
  108. G.S. Krinchik “Dynamic effects of electro- and piezoreflectance of light by crystals11 75–80 (1968)
    78.20.Jq, 78.20.Hp, 71.20.−b (all)
  109. L.V. Keldysh, E.V. Shpol’skii “Lenin prizes for 19669 641–641 (1967)
    01.10.Cr, 74.20.De, 74.70.Ad, 74.25.−q, 71.35.−y (all)
  110. V.E. Eskin “Light scattering as a method of studying polymers7 270–304 (1964)
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    01.10.Fv, 71.35.−y, 67.55.−s, 74.25.−q, 72.20.My, 76.80.+y (all)
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