PACS numbers

61.72.Hh Indirect evidence of dislocations and other defects (resistivity, slip, creep, strains, internal friction, EPR, NMR, etc.)
  1. V.I. Karas’, V.I. Sokolenko “Nonequilibrium kinetics of the electron—phonon subsystem can give rise to electric- and magnetic-plasticity effects in crystals in alternating electric and/or magnetic fieldsPhys. Usp. 61 1051–1071 (2018)
    61.72.Ff, 61.72.Hh, 62.20.Hg, 63.20.kd, 63.20.kp, 75.80.+q, 83.60.Np (all)
  2. Zh.I. Alferov, A.F. Andreev et alYurii Andreevich Osip’yan (on his sixtieth birthday)Sov. Phys. Usp. 34 (2) 202–203 (1991)
    01.60.+q, 01.10.Cr, 81.30.Kf, 61.72.Hh, 72.30.+q, 74.72.−h (all)
  3. N.A. Tyapunina, É.P. Belozerova “Charged dislocations and properties of alkali halide crystalsSov. Phys. Usp. 31 1060–1084 (1988)
    61.72.Bb, 61.72.Hh, 72.50.+b (all)
  4. A.M. Kosevich “How a crystal flowsSov. Phys. Usp. 17 920–930 (1975)
    62.20.Hg, 61.72.Hh, 81.40.Lm, 66.30.Lw, 61.72.Ji, 62.20.Fe (all)
  5. V.I. Al’shits, V.L. Indenbom “Dynamic dragging of dislocationsSov. Phys. Usp. 18 1–20 (1975)
    61.72.Hh, 63.20.Mt, 78.30.−j (all)
  6. G.V. Kurdyumov, N.V. Klassen-Neklyudova “Progress in the theory of strength and plasticity of solids (A review of A. V. Stepanov’s works)Sov. Phys. Usp. 16 828–833 (1974)
    62.20.Fe, 81.40.Lm, 61.72.Hh (all)
  7. M.I. Kaganov, Ya.V. Kravchenko, V.D. Natsik “Dislocation dragging by electrons in metalsSov. Phys. Usp. 16 878–891 (1974)
    61.72.Hh, 74.25.Ld, 62.20.Fe, 81.40.Lm, 62.65.+k (all)
  8. Yu.A. Osip’yan “Interaction of Dislocations with Current Carriers in CrystalsSov. Phys. Usp. 14 543–544 (1972)
    61.72.Lk, 61.72.Hh, 62.20.Fe, 72.20.Jv, 61.72.Ji, 72.20.Fr (all)
  9. Yu.P. Raizer “Physical principles of the theory of brittle fracture cracksSov. Phys. Usp. 13 129–139 (1970)
    62.20.Mk, 81.40.Np, 61.72.Hh, 81.40.Jj (all)
  10. M.V. Klassen-Neklyudova “All-Union conference on dislocations and mechanical properties of crystalsSov. Phys. Usp. 7 755–757 (1965)
    01.30.Cc, 61.72.Bb, 61.72.Hh, 62.20.Hg, 62.20.Mk, 81.40.Lm (all)
  11. E.M. Nadgornyĭ “The properties of whiskersSov. Phys. Usp. 5 462–477 (1962)
    68.70.+w, 81.40.Jj, 81.40.Lm, 61.72.Hh, 75.60.Ch, 79.70.+q (all)
  12. B.Ya. Pines “Diffusion and the mechanical properties of solidsSov. Phys. Usp. 5 251–271 (1962)
    62.20.Hg, 61.72.Hh, 62.20.Dc, 81.40.Lm, 66.30.Fq (all)
  13. A.N. Orlov, V.L. Indenbom “Physical theory of plasticity and strengthSov. Phys. Usp. 5 272–291 (1962)
    62.20.Fe, 81.40.Lm, 61.72.Hh (all)
  14. V.I. Sarrak “Brittle fracture of metalsSov. Phys. Usp. 2 150–164 (1959)
    62.20.Mk, 81.40.Np, 61.72.Hh, 62.20.Fe, 81.40.Lm (all)
  15. V.S. Postnikov “Temperature dependence of the internal friction of metals and alloysSov. Phys. Usp. 1 29–53 (1958)
    62.40.+i, 65.40.De, 81.40.Jj, 62.20.Dc, 61.72.Hh (all)
  16. V.I. Likhtman, E.D. Shchukin “Physico-chemical phenomena in the deformation of metalsSov. Phys. Usp. 1 91–112 (1958)
    62.20.Fe, 82.80.−d, 81.40.Lm, 62.20.Mk, 61.72.Hh, 81.40.Np (all)
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