Electric fields in plastically deformed crystals with charged dislocations
Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 1 (2007), pp. 96-99.

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The expressions for the electric fields intensities formed by the operation of the dislocational source in the crystal with charged dislocations are given in the paper. The area of the source and accumulation of its emitted dislocations are considered separately. The first is introduced as plain charged layer which summary charge quantity is equal to the charge quantity of dislocations in the accumulation.
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Yu. I. Tyalin; V. A. Tyalina; A. A. Butyagin; D. V. Zolotova. Electric fields in plastically deformed crystals with charged dislocations. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 1 (2007), pp. 96-99. http://geodesic.mathdoc.fr/item/VSGTU_2007_1_a14/

[1] Tyalin Yu. I., Finkel V. M., “Skopleniya zaryazhennykh dislokatsii i zarozhdenie treschin v nemetallicheskikh kristallakh”, Doklady AN SSSR, 279:5 (1984), 1126–1130

[2] Tyalin Yu. I., Finkel V. M., Gurova O. V., Kopylov N. V., “Spetsifika skoplenii zaryazhennykh dislokatsii”, Fizika tverdogo tela, 27:10 (1985), 3005–3009

[3] Khirt Dzh., Lote I., Teoriya dislokatsii, Atomizdat, M., 1972

[4] Shevtsova I. N., “Zaryazhenie podvizhnykh dislokatsii i elektrizatsiya ionnykh kristallov pri plasticheskoi deformatsii”, Fiz. tverd. tela, 25:4 (1983), 1172–1178

[5] Vladimirov V. I., Khananov Sh. Kh., “Diskretno-kontinualnoe rassmotrenie dislokatsionnykh skoplenii”, Fizika metallov i metallovedenie, 27:6 (1969), 969–975 | MR

[6] Bredikhin S. I., Shmurak S. Z., “Stimulirovannoe deformatsiei svechenie kristallov $\mathrm{ZnS}$”, Pisma v zh. eksperim. i teor. fiz., 19:12 (1974), 709–713