-
A. I. Landau, “The Dynamics of Dislocation (Kink) in the Frenkel‐Kontorova Model in the Case of a Nonzero Environment Temperature”, Physica Status Solidi (b), 191:1 (1995), 67
-
P. P. Pal'-Val', V. D. Natsik, L. N. Pal'-Val', “Dislocation mechanism of low-temperature acoustic relaxation in niobium”, Low Temperature Physics, 21:6 (1995), 505
-
C. S. Coffey, “Quantum-mechanical aspects of dislocation motion and plastic flow”, Phys. Rev. B, 49:1 (1994), 208
-
A. B. Rinkevich, “Absorption and velocity of ultrasound in plastically deformed tungsten”, Low Temperature Physics, 19:1 (1993), 57
-
V.L. INDENBOM, Z.K. SARALIDZE, Modern Problems in Condensed Matter Sciences, 31, Elastic Strain Fields and Dislocation Mobility, 1992, 571
-
V.I. ALSHITS, Modern Problems in Condensed Matter Sciences, 31, Elastic Strain Fields and Dislocation Mobility, 1992, 625
-
N. V. Isaev, V. D. Natsik, V. V. Pustovalov, I. A. Shepel', S. É. Shumilin, “Quantum-inertial mechanism of plastic deformation of lead-based alloys at temperatures around and below 1 K”, Soviet Journal of Low Temperature Physics, 18:8 (1992), 641
-
I. A. Shepel', L. N. Zagoruiko, V. D. Natsik, V. V. Pustovalov, V. P. Soldatov, “Investigations of the low-temperature plasticity anomalies in Pb-Sn alloys by active deformation and creep techniques”, Soviet Journal of Low Temperature Physics, 17:3 (1991), 202
-
V.R. Chechetkin, A.S. Sigov, “Stability of superconducting magnet systems subject to thermal disturbances”, Physics Reports, 176:1-2 (1989), 1
-
V. M. Koleshko, I. V. Kiryushin, “Deformation mechanism maps and gettering diagrams for single-crystal silicon”, Phys. Stat. Sol. (a), 109:1 (1988), 161
-
L. A. Shuvalov, Springer Series in Solid-State Sciences, 37, Modern Crystallography IV, 1988, 50
-
E. Nadgornyi, “Dislocation dynamics and mechanical properties of crystals”, Progress in Materials Science, 31 (1988), 1
-
L. N. Gumen, A. A. Krokhin, “Nonlinear theory of electron drag of one-dimensional defects with a long-range potential”, Soviet Journal of Low Temperature Physics, 14:9 (1988), 529
-
V. V. Malashenko, V. L. Sobolev, B. I. Khudik, “Dynamical Deceleration of a Dislocation by Surface Defects”, Physica Status Solidi (b), 144:2 (1987), 463
-
V. V. Malashenko, V. L. Sobolev, B. I. Khudik, “Self‐Consistent Description of the Effect of Point Defects on Spectrum and Dynamic Deceleration of Dislocations”, Physica Status Solidi (b), 143:2 (1987), 425
-
I. Retat, “Plastic deformation of FeNi and Fe65(Ni1-xMNx)35 between 30 and 460 K. Magnetically induced invar hardening”, Phys. Stat. Sol. (a), 99:1 (1987), 121
-
T.H. Wille, W. Gieseke, C.H. Schwink, “Quantitative analysis of solution hardening in selected copper alloys”, Acta Metallurgica, 35:11 (1987), 2679
-
Yoshiaki Kogure, Toshio Kosugi, Tosio Hiki, “Calculation of Pressure Dependence of Dislocation Damping Constant in Crystals”, J. Phys. Soc. Jpn., 54:12 (1985), 4592
-
Toshio Kosugi, Yoshiaki Kogure, Yosio Hiki, “Effect of Pressure on Dislocation Damping in Alkali Halide Crystals”, J. Phys. Soc. Jpn., 54:7 (1985), 2565
-
V. D. Natsik, K. A. Chishko, “Effect of impurities on dynamic dragging of dislocations”, Cryst. Res. Technol., 19:6 (1984), 763