A representation of the kinetic equation for electrons in a homogeneous constant electromagnetic field
Teoretičeskaâ i matematičeskaâ fizika, Tome 45 (1980) no. 1, pp. 93-106 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Wigner representation for electron density matrix in the case of constant homogeneous electromagnetic field is considered. The gauge invariant quantities (the electron coordinate and kinematic momentum) are chosen as the basic variables. The integrodifferential quantum kinetic equation is obtained for the distribution function in the approximation of weak coupling between the electrons and impurity centres. Kinetic coefficients are calculated for the quantum kinetic equation in the classical limit.
@article{TMF_1980_45_1_a8,
     author = {N. N. Bychkova and S. V. Peletminskii and A. A. Yatsenko},
     title = {A~representation of~the kinetic equation for electrons in~a~homogeneous constant electromagnetic field},
     journal = {Teoreti\v{c}eska\^a i matemati\v{c}eska\^a fizika},
     pages = {93--106},
     year = {1980},
     volume = {45},
     number = {1},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/TMF_1980_45_1_a8/}
}
TY  - JOUR
AU  - N. N. Bychkova
AU  - S. V. Peletminskii
AU  - A. A. Yatsenko
TI  - A representation of the kinetic equation for electrons in a homogeneous constant electromagnetic field
JO  - Teoretičeskaâ i matematičeskaâ fizika
PY  - 1980
SP  - 93
EP  - 106
VL  - 45
IS  - 1
UR  - http://geodesic.mathdoc.fr/item/TMF_1980_45_1_a8/
LA  - ru
ID  - TMF_1980_45_1_a8
ER  - 
%0 Journal Article
%A N. N. Bychkova
%A S. V. Peletminskii
%A A. A. Yatsenko
%T A representation of the kinetic equation for electrons in a homogeneous constant electromagnetic field
%J Teoretičeskaâ i matematičeskaâ fizika
%D 1980
%P 93-106
%V 45
%N 1
%U http://geodesic.mathdoc.fr/item/TMF_1980_45_1_a8/
%G ru
%F TMF_1980_45_1_a8
N. N. Bychkova; S. V. Peletminskii; A. A. Yatsenko. A representation of the kinetic equation for electrons in a homogeneous constant electromagnetic field. Teoretičeskaâ i matematičeskaâ fizika, Tome 45 (1980) no. 1, pp. 93-106. http://geodesic.mathdoc.fr/item/TMF_1980_45_1_a8/

[1] W. Kohn, J. Luttinger, Phys. Rev., 108 (1957), 590 | DOI | MR

[2] R. N. Gurzhi, ZhETF, 33 (1957), 451

[3] R. Kh. Amirov, S. A. Smolyanskii, L. Sh. Shekhter, TMF, 21 (1974), 247

[4] E. M. Eshptein, FTT, 11 (1969), 2732

[5] E. Adams, T. Holstein, J. Phys. Chem. Solids, 10 (1959), 254 | DOI

[6] P. S. Zyryanov, V. P. Silin, FMM, 17 (1964), 934; П. С. Зырянов, М. И. Клингер, Квантовая теория явлений электронного переноса в кристаллических полупроводниках, «Наука», 1976

[7] V. G. Baryakhtar, S. V. Peletminskii, ZhETF, 48 (1965), 187

[8] I. B. Levinson, ZhETF, 57 (1969), 660 | MR

[9] V. V. Krasilnikov, S. V. Peletminskii, A. A. Yatsenko, Preprint KhFTI 79-5, Kharkov, 1979

[10] V. V. Krasilnikov, S. N. Roschupkin, V. S. Schelokov, UFZh, 16 (1971), 1690 | MR

[11] N. N. Bogolyubov, Preprint OIYaI D-781, Dubna, 1961

[12] L. D. Landau, E. M. Lifshits, Statisticheskaya fizika, «Nauka», 1971

[13] S. V. Peletminskii, D. D. Tskhakaya, FTT, 9 (1967), 790