PACS numbers

61.72.−y Defects and impurities in crystals; microstructure
  1. D.A. Zolotov, V.E. Asadchikov et alNew approaches to three-dimensional dislocation reconstruction in silicon from X-ray topo-tomography dataPhys. Usp. 66 943–950 (2023)
    07.85.−m, 61.72.−y, 61.72.Bb (all)
  2. T.S. Argunova, V.G. Kohn “Study of micropores in single crystals by in-line phase contrast imaging with synchrotron radiationPhys. Usp. 62 602–616 (2019)
    42.25.Fx, 42.25.Kb, 61.72.−y, 61.72.Ff, 61.72.Lk (all)
  3. A.L. Buchachenko “Microwave stimulation of dislocations and the magnetic control of the earthquake corePhys. Usp. 62 46–53 (2019)
    61.72.−y, 62.20.−x, 91.30.Px (all)
  4. M.N. Sapozhnikov “Fifty years of selective laser spectroscopy of solids: a history, general principles and applicationsPhys. Usp. 61 (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)
  5. V.I. Alshits, E.V. Darinskaya et alDislocation kinetics in nonmagnetic crystals: a look through a magnetic windowPhys. Usp. 60 305–318 (2017)
    07.05.Tp, 61.72.−y, 62.20.−x (all)
  6. A.L. Buchachenko “Magnetoplasticity and the physics of earthquakes. Can a catastrophe be prevented?Phys. Usp. 57 92–98 (2014)
    61.72.−y, 62.20.−x, 91.30.Px (all)
  7. 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 moleculesPhys. Usp. 56 605–622 (2013)
    42.30.−d, 42.62.−b, 61.43.−j, 61.72.−y, 78.20.−e, 78.47.−p, 78.55.−m (all)
  8. Spintronics and nanomagnetism (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 25 April 2012)Phys. Usp. 55 1255–1267 (2012)
    01.10.Fv, 61.72.−y, 62.20.−x, 62.30.+d, 75.47.−m, 75.75.−c, 85.75.−d (all)
  9. V.E. Panin, V.E. Egorushkin, A.V. Panin “Nonlinear wave processes in a deformable solid as in a multiscale hierarchically organized systemPhys. Usp. 55 1260–1267 (2012)
    61.72.−y, 62.20.−x, 62.30.+d (all)
  10. V.B. Molodkin, A.P. Shpak et alMultiparametric crystallography using the diversity of multiple scattering patterns for Bragg and diffuse waves. Method of standing diffuse wavesPhys. Usp. 54 661–689 (2011)
    42.25.Fx, 61.05.−a, 61.72.−y (all)
  11. Yu.S. Nechaev “The distribution of carbon in steelsPhys. Usp. 54 465–471 (2011)
    61.72.−y, 62.20.−x, 81.30.Kf (all)
  12. L.V. Spivak “Synergy effects in the deformation response of thermodynamically open metal — hydrogen systemsPhys. Usp. 51 863–885 (2008)
    61.43.−j, 61.72.−y, 62.20.−x, 81.05.Bx (all)
  13. R.B. Morgunov “Spin micromechanics in the physics of plasticityPhys. Usp. 47 125–147 (2004)
    61.72.−y, 62.20.−x, 75.80.+q (all)
  14. V.G. Lifshits, Yu.L. Gavrilyuk et alSurface phases on siliconPhys. Usp. 43 525–527 (2000)
    61.72.−y, 64.70.−p, 68.35.−p, 68.90.+g (all)
  15. B.N. Mukashev, Kh.A. Abdullin, Yu.V. Gorelkinskii “Metastable and bistable defects in siliconPhys. Usp. 43 139–150 (2000)
    61.72.−y, 61.72.Tt, 61.80.−x, 71.55.−i (all)
  16. A.D. Gul’ko, F.S. Dzheparov et alYurii Georgievich Abov (on his seventieth birthday)Sov. Phys. Usp. 35 (11) 997–998 (1992)
    01.60.+q, 29.30.Hs, 28.50.Dr, 21.10.Hw, 61.72.−y, 76.60.−k (all)
  17. S.N. Andrianov, Yu.V. Naboikin et alOptical superradiance in a diphenyl crystal with pyreneSov. Phys. Usp. 29 1060–1062 (1986)
    78.45.+h, 61.72.−y (all)
  18. B.I. Sturman “Collision integral for elastic scattering of electrons and phononsSov. Phys. Usp. 27 881–884 (1984)
    63.20.Kr, 61.72.−y, 05.70.Ce (all)
  19. V.M. Agranovich “The problem of the defects in the process of excition luminescence of molecular crystalsSov. Phys. Usp. 3 427–433 (1960)
    78.60.−b, 61.72.−y, 71.35.−y, 71.36.+c (all)
  20. F. Klement, Ch.B. Lushchik “Conference on the physics of ALKALI-HALlDE crystalsSov. Phys. Usp. 3 273–277 (1960)
    01.30.Cc, 78.55.Fv, 71.35.−y, 61.66.Fn, 61.72.−y (all)
  21. N.V. Sidorov, N.A. Teplyakova, M.N. Palatnikov “Manifestation of defects and imperfections of lithium niobate crystals in Raman spectraPhys. Usp., accepted
    33.20.Fb, 42.70.−a, 42.70.Mp, 61.72.−y (all)
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