Abstract
D.N. Zubarev`s method of non-equilibrium statistical operator is applied to problems of relativistic kinetic theory. Within this method, a generalized relativistic quantum kinetic equation with collision integrals of the first and second orders in the coupling constant is derived. It is shown that this result holds valid in the case of gauge invariant theories as well. An advantage of the developed approach is exemplified by models of relativistic nuclear matter. (orig.)
Prozorkevich, A B;
[1]
Smoliansky, S A;
[1]
Toneev, V D
[2]
- Saratovskij Gosudarstvennyj Univ., Saratov (Russian Federation). Physics Dept.
- Gesellschaft fuer Schwerionenforschung mbH, Darmstadt (Germany)
Citation Formats
Prozorkevich, A B, Smoliansky, S A, and Toneev, V D.
A generalized quantum kinetic equation and its application to models of relativistic nuclear dynamics.
Germany: N. p.,
1993.
Web.
Prozorkevich, A B, Smoliansky, S A, & Toneev, V D.
A generalized quantum kinetic equation and its application to models of relativistic nuclear dynamics.
Germany.
Prozorkevich, A B, Smoliansky, S A, and Toneev, V D.
1993.
"A generalized quantum kinetic equation and its application to models of relativistic nuclear dynamics."
Germany.
@misc{etde_10135133,
title = {A generalized quantum kinetic equation and its application to models of relativistic nuclear dynamics}
author = {Prozorkevich, A B, Smoliansky, S A, and Toneev, V D}
abstractNote = {D.N. Zubarev`s method of non-equilibrium statistical operator is applied to problems of relativistic kinetic theory. Within this method, a generalized relativistic quantum kinetic equation with collision integrals of the first and second orders in the coupling constant is derived. It is shown that this result holds valid in the case of gauge invariant theories as well. An advantage of the developed approach is exemplified by models of relativistic nuclear matter. (orig.)}
place = {Germany}
year = {1993}
month = {Apr}
}
title = {A generalized quantum kinetic equation and its application to models of relativistic nuclear dynamics}
author = {Prozorkevich, A B, Smoliansky, S A, and Toneev, V D}
abstractNote = {D.N. Zubarev`s method of non-equilibrium statistical operator is applied to problems of relativistic kinetic theory. Within this method, a generalized relativistic quantum kinetic equation with collision integrals of the first and second orders in the coupling constant is derived. It is shown that this result holds valid in the case of gauge invariant theories as well. An advantage of the developed approach is exemplified by models of relativistic nuclear matter. (orig.)}
place = {Germany}
year = {1993}
month = {Apr}
}