PACS numbers

03.65.Ge Solutions of wave equations: bound states 05.40.−a Fluctuation phenomena, random processes, noise, and Brownian motion 05.60.Gg Quantum transport
  1. V.M. Rozenbaum, I.V. Shapochkina, L.I. Trakhtenberg “Quantum particle in a V-shaped well of arbitrary asymmetry. Brownian motorsPhys. Usp. 67 1046–1055 (2024)
    03.65.Ge, 05.40.−a, 05.60.Gg (all)
  2. S.V. Demishev “Spin-fluctuation transitionsPhys. Usp. 67 22–43 (2024)
    05.40.−a, 05.70.Fh, 05.90.+m, 61.05.fg, 71.27.+a, 75.20.Ck, 75.20.En, 75.25.Dk, 75.30.Kz, 75.47.Np, 75.50.Pp, 76.30.−v (all)
  3. G.S. Golitsyn “A N Kolmogorov's 1934 paper is the basis for explaining the statistics of natural phenomena of the macrocosmPhys. Usp. 67 80–90 (2024)
    05.40.−a, 91.30.−f, 92.60.−e (all)
  4. S.P. Efimov “Coordinate space modification of Fock's theory. Harmonic tensors in the quantum Coulomb problemPhys. Usp. 65 952–967 (2022)
    02.30.Em, 03.65.Db, 03.65.Ge (all)
  5. V.I. Ritus “Finite value of the bare charge and the relation of the fine structure constant ratio for physical and bare charges to zero-point oscillations of the electromagnetic field in a vacuumPhys. Usp. 65 468–486 (2022)
    02.40.−k, 03.70.+k, 05.40.−a, 11.10.Hi, 11.10.Jj, 11.55.Hx, 12.20.−m, 41.60.−m (all)
  6. Yu.V. Gulyaev, A.S. Bugaev et alNanotransport controlled by means of the ratchet effectPhys. Usp. 63 311–326 (2020)
    05.40.−a, 05.60.Cd (all)
  7. V.M. Rozenbaum, I.V. Shapochkina, L.I. Trakhtenberg “Green's function method in the theory of Brownian motorsPhys. Usp. 62 496–509 (2019)
    05.40.−a, 05.60.Cd (all)
  8. O.G. Bakunin “Quasilinear theory of plasma turbulence. Origins, ideas, and evolution of the methodPhys. Usp. 61 52–83 (2018)
    05.40.−a, 47.27.tb, 47.53.+n (all)
  9. S.K. Nechaev, K. Polovnikov “Rare-event statistics and modular invariancePhys. Usp. 61 99–104 (2018)
    02.30.−f, 02.50.−r, 05.40.−a (all)
  10. P.I. Arseev, V.N. Mantsevich et alTunneling features in semiconductor nanostructuresPhys. Usp. 60 1067–1086 (2017)
    05.60.Gg, 68.37.Ef, 73.40.Gk, 73.63.−b (all)
  11. K.P. Zybin, A.S. Il’yn “Properties of turbulence driven by random external force in the Burgers modelPhys. Usp. 59 1241–1244 (2016)
    05.40.−a, 47.10.ad, 47.27.E− (all)
  12. V.I. Klyatskin “Stochastic structure formation in random mediaPhys. Usp. 59 67–95 (2016)
    05.40.−a, 05.45.−a, 46.65.+g, 47.27.−i (all)
  13. P.I. Arseev “On the nonequilibrium diagram technique: derivation, some features and applicationsPhys. Usp. 58 1159–1205 (2015)
    03.70.+k, 05.60.Gg, 11.10.Wx, 72.10.Bg (all)
  14. B.V. Deryaguin, I.I. Abrikosova, E.M. Lifshitz “Molecular attraction of condensed bodiesPhys. Usp. 58 906–924 (2015)
    01.65.+g, 05.40.−a, 34.35.+a (all)
  15. N.P. Danilova “A note on the history of experimental and theoretical research into molecular attraction forces between solidsPhys. Usp. 58 925–926 (2015)
    01.65.+g, 05.40.−a, 34.35.+a (all)
  16. O.G. Bakunin “Stochastic instability and turbulent transport. Characteristic scales, increments, diffusion coefficientsPhys. Usp. 58 252–285 (2015)
    05.40.−a, 47.27.−i, 47.53.+n (all)
  17. E.A. Vinogradov, N.N. Novikova, V.A. Yakovlev “Near field phonon—polariton spectroscopy as a method for studying the optical properties of nanofilmsPhys. Usp. 57 604–607 (2014)
    05.40.−a, 42.50.Lc, 71.36.+c (all)
  18. V.S. Popov, B.M. Karnakov “Hydrogen atom in a strong magnetic fieldPhys. Usp. 57 257–279 (2014)
    03.65.Ge, 03.65.Pm, 32.30.−r (all)
  19. V.P. Neznamov, I.I. Safronov “A new method for solving the Z > 137 problem and determining hydrogen-like energy levelsPhys. Usp. 57 189–193 (2014)
    03.65.Ge, 03.65.Pm, 12.20.−m (all)
  20. V.V. Uchaikin “Fractional phenomenology of cosmic ray anomalous diffusionPhys. Usp. 56 1074–1119 (2013)
    02.50.−r, 05.40.−a, 98.70.Sa (all)
  21. O.G. Bakunin “The role of B.B. Kadomtsev’s ideas in shaping the current understanding of turbulent transportPhys. Usp. 56 1132–1149 (2013)
    05.40.−a, 47.27.−i, 47.53.+n (all)
  22. T. Konstandin “Quantum transport and electroweak baryogenesisPhys. Usp. 56 747–771 (2013)
    05.60.Gg, 12.15.−y, 12.60.Jv (all)
  23. G.N. Bochkov, Yu.E. Kuzovlev “Fluctuation-dissipation relations: achievements and misunderstandingsPhys. Usp. 56 590–602 (2013)
    05.20.−y, 05.40.−a, 05.70.−a (all)
  24. O.G. Bakunin “Reconstruction of streamline topology, and percolation models of turbulent transportPhys. Usp. 56 243–260 (2013)
    05.40.−a, 47.27.T−, 47.53.+n (all)
  25. Ю.М. Ципенюк “Corrigenda to “Zero point energy and zero point oscillations: how they are detected experimentally” (Usp. Fiz. Nauk 182 855 (2012))Phys. Usp. 55 (12) (2012)
    03.65.−w, 03.65.Ge, 61.05.cp, 61.05.Q (all)
  26. Yu.M. Tsipenyuk “Zero point energy and zero point oscillations: how they are detected experimentallyPhys. Usp. 55 796–807 (2012)
    03.65.−w, 03.65.Ge, 61.05.cp, 61.05.Qr (all)
  27. Econophysics and evolutionary economics (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 2 November 2010)Phys. Usp. 54 729–761 (2011)
    01.10.Fv, 02.50.−r, 05.40.−a, 05.45.Df, 89.65.Gh, 89.75.−k (all)
  28. M.M. Dubovikov, N.V. Starchenko “Econophysics and the fractal analysis of financial time seriesPhys. Usp. 54 754–761 (2011)
    05.40.−a, 05.45.Df, 89.65.Gh (all)
  29. L.P. Pitaevskii “Rigorous results of nonequilibrium statistical physics and their experimental verificationPhys. Usp. 54 625–632 (2011)
    05.20.−y, 05.40.−a, 05.70.Ln (all)
  30. V.I. Klyatskin “Integral characteristics: a key to understanding structure formation in stochastic dynamic systemsPhys. Usp. 54 441–464 (2011)
    05.40.−a, 05.45.−a, 46.65.+g, 47.27.−i (all)
  31. V.S. Dotsenko “Universal randomnessPhys. Usp. 54 259–280 (2011)
    02.50.Cw, 02.90.+p, 05.20.−y, 05.40.−a, 61.41.+e (all)
  32. V.V. Nesvizhevsky “Near-surface quantum states of neutrons in the gravitational and centrifugal potentialsPhys. Usp. 53 645–675 (2010)
    03.65.Ge, 28.20.−v, 29.30.Hs (all)
  33. E.A. Vinogradov, I.A. Dorofeyev “Thermally stimulated electromagnetic fields of solidsPhys. Usp. 52 425–459 (2009)
    05.40.−a, 42.50.Lc, 71.36.+c (all)
  34. Yu.V. Gulyaev, Yu.N. Barabanenkov et alCommemoration of the centenary of the birth of S M Rytov (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 26 November 2008)Phys. Usp. 52 499–526 (2009)
    01.10.Fv, 01.60.+q, 01.65.+g, 05.40.−a, 05.45.−a, 41.20.−q, 42.25.Bs, 42.25.Dd, 42.65.Pc, 42.68.Ay, 42.68.Xy, 46.65.+g, 47.27.eb, 72.15.Rn, 85.50.−n (all)
  35. V.I. Klyatskin “Modern methods for the statistical description of dynamical stochastic systemsPhys. Usp. 52 514–519 (2009)
    05.40.−a, 05.45.−a, 42.25.Dd, 46.65.+g, 47.27.eb (all)
  36. V.I. Klyatskin “Statistical topography and Lyapunov exponents in stochastic dynamical systemsPhys. Usp. 51 395–407 (2008)
    05.40.−a, 05.45.−a, 42.25.Dd, 46.65.+g, 47.27.eb (all)
  37. E.A. Nelin “Impedance model for quantum-mechanical barrier problemsPhys. Usp. 50 293–299 (2007)
    03.65.Ge
  38. A.B. Shvartsburg “Tunneling of electromagnetic waves: paradoxes and prospectsPhys. Usp. 50 37–51 (2007)
    03.65.Ge, 03.65.Sq, 42.25.Bs, 42.25.Gy (all)
  39. A.D. Sukhanov, Yu.G. Rudoi “One of Gibbs’s ideas that has gone unnoticed (comment on chapter IX of his classic book)Phys. Usp. 49 531–535 (2006)
    01.65.+g, 05.20.−y, 05.40.−a (all)
  40. V.V. Belov, S.Yu. Dobrokhotov et alA generalized adiabatic principle for electron dynamics in curved nanostructuresPhys. Usp. 48 962–968 (2005)
    03.65.Ge, 03.65.Nk, 73.63.−b (all)
  41. A.B. Shvartsburg “Optics of nonstationary mediaPhys. Usp. 48 797–823 (2005)
    03.65.Ge, 03.65.Sq, 42.25.−p, 42.25.Bs, 42.25.Gy (all)
  42. V.Yu. Zaburdaev, A.S. Romanov, K.V. Chukbar “’Hermite’ states in the quantum interaction of vorticesPhys. Usp. 48 841–846 (2005)
    03.65.Ca, 03.65.Ge, 47.32.Cc (all)
  43. L.M. Zelenyi, A.V. Milovanov “Fractal topology and strange kinetics: from percolation theory to problems in cosmic electrodynamicsPhys. Usp. 47 749–788 (2004)
    05.40.−a, 05.45.Df, 05.65.+b, 94.30.−d (all)
  44. V.I. Klyatskin “Clustering and diffusion of particles and passive tracer density in random hydrodynamic flowsPhys. Usp. 46 667–688 (2003)
    02.50.−r, 05.40.−a, 05.45.−a (all)
  45. O.G. Bakunin “Correlation and percolation properties of turbulent diffusionPhys. Usp. 46 733–744 (2003)
    05.40.−a, 47.27.Qb, 47.53.+n (all)
  46. V.V. Nesvizhevskii “Quantum states of neutrons in a gravitational field and the interaction of neutrons with nanoparticlesPhys. Usp. 46 93–97 (2003)
    03.65.Ge, 14.20.−c, 28.20.−v (all)
  47. M.V. Budantsev, Z.D. Kvon et alOrder, disorder and chaos in 2D lattice of coupled Sinai billiardsPhys. Usp. 44 20–24 (2001)
    72.15.−v, 72.15.Rn, 05.60.Gg, 05.45.Mt (all)
  48. T.M. Fromhold, A.A. Krokhin et alChaotic quantum transport in superlatticesPhys. Usp. 44 24–27 (2001)
    72.15.−v, 72.15.Rn, 05.60.Gg, 05.45.Mt (all)
  49. F. Evers, A.D. Mirlin et alQuasiclassical memory effects: anomalous transport properties of two-dimensional electrons and composite fermions subject to a long-range disorderPhys. Usp. 44 27–31 (2001)
    72.15.−v, 72.15.Rn, 05.60.Gg, 05.45.Mt (all)
  50. I.M. Suslov “Density of states near the Anderson transition in the $(4-\varepsilon)$-dimensional spacePhys. Usp. 44 31–35 (2001)
    72.15.−v, 72.15.Rn, 05.60.Gg, 05.45.Mt (all)
  51. I.M. Dremin, O.V. Ivanov, V.A. Nechitailo “Wavelets and their usesPhys. Usp. 44 447–478 (2001)
    02.60.−x, 02.70.−c, 05.40.−a, 87.57.−s (all)
  52. A.I. Olemskoi “Supersymmetric field theory of a nonequilibrium stochastic system as applied to disordered heteropolymersPhys. Usp. 44 479–513 (2001)
    05.40.−a, 05.70.Ln, 11.30.Pb, 61.41.+e (all)
  53. Yu.G. Rudoi, A.D. Sukhanov “Thermodynamic fluctuations within the Gibbs and Einstein approachesPhys. Usp. 43 1169–1199 (2000)
    05.20.Gg, 05.30.Ch, 05.40.−a, 05.70.Ce (all)
  54. A.B. Shvartsburg “Dispersion of electromagnetic waves in stratified and nonstationary media (exactly solvable models)Phys. Usp. 43 1201–1228 (2000)
    03.65.Ge, 03.65.Sq, 42.25.Bs, 42.25.Gy (all)
  55. S.N. Gordienko “Irreversibility and the probabilistic treatment of the dynamics of classical particlesPhys. Usp. 42 573–590 (1999)
    03.65.−w, 03.65.Bz, 05.40.−a, 05.45.−a (all)
  56. L.P. Pitaevskii “On the problem of the ’Schrödinger atom’Phys. Usp. 36 (8) 760–761 (1993)
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  57. A.D. Vlasov “The Schrödinger atomPhys. Usp. 36 (2) 94–99 (1993)
    03.65.Ge, 03.50.De, 03.65.Fd, 02.30.Jr (all)
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    03.65.Ta, 03.65.Fd, 03.65.Ge, 03.65.Ud (all)
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    01.30.Vv, 02.50.−r, 05.40.−a (all)
  60. A.D. Sakharov “Interaction of the electron and the positron in pair productionSov. Phys. Usp. 34 (5) 375–377 (1991)
    14.60.Cd, 03.65.Ge, 02.30.Nw, 02.30.Uu (all)
  61. L.V. Prokhorov, S.V. Shabanov “Phase space of mechanical systems with a gauge groupSov. Phys. Usp. 34 (2) 108–140 (1991)
    11.15.−q, 11.10.Ef, 12.20.−m, 03.65.Sq, 03.65.Ge (all)
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    03.65.Ta, 01.30.Rr, 03.65.Ge (all)
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  65. V.I. Tatarskii “Example of the description of dissipative processes in terms of reversible dynamic equations and some comments on the fluctuation-dissipation theoremSov. Phys. Usp. 30 134–152 (1987)
    03.65.Ca, 03.65.Db, 05.40.−a, 02.30.Uu, 02.30.Nw (all)
  66. From the Editorial BoardSov. Phys. Usp. 30 153–153 (1987)
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    03.65.Fd, 04.60.−m, 02.20.Sv, 03.65.Ge, 21.30.Fe, 11.30.Qc (all)
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    03.65.Fd, 03.65.Ge, 32.60.+i, 31.15.Ne, 31.15.Md (all)
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