Kinetic equations for a nonideal quantum system
- 1 October 1996
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 54 (4) , 3274-3284
- https://doi.org/10.1103/physreve.54.3274
Abstract
In the framework of real-time Green’s functions, the general kinetic equations are investigated in a first-order gradient expansion. Within this approximation, the problem of the reconstruction of the two-time correlation functions from the one-time Wigner function was solved. For the Wigner function, a cluster expansion is found in terms of a quasiparticle distribution function. In equilibrium, this expansion leads to the well-known generalized Beth-Uhlenbeck expression of the second virial coefficient. As a special case, the T-matrix approximation for the self-energy is investigated. The quantum kinetic equation derived thus has, besides the (Markovian) Boltzmann collision integral, additional terms due to the retardation expansion which reflect memory effects. Special interest is paid to the case that bound states exist in the system. It is shown that the bound state contribution, which can be introduced via a bilinear expansion of the two-particle T matrix, follows from the first-order retardation term in the general kinetic equation. The full Wigner function is now a sum of one function describing the unbound particles and another one for the bound state contribution. The latter two functions have to be determined from a coupled set of kinetic equations. In contrast to the quantum Boltzmann equation, energy and density of a nonideal system are conserved. © 1996 The American Physical Society.Keywords
This publication has 39 references indexed in Scilit:
- Quasiparticle Boltzmann equation in semiconductorsPhysical Review B, 1995
- Memory effects and virial corrections in nonequilibrium dense systemsPhysical Review E, 1995
- Quasiparticle Boltzmann Equation in SemiconductorsPhysical Review Letters, 1994
- Boltzmann equation for a dissociating gasJournal of Statistical Physics, 1989
- Quantum Boltzmann equation and Kubo formula for electronic transport in solidsPhysical Review B, 1989
- Quantum-statistical second virial coefficient and scattering theoryPhysica, 1971
- Second and third virial coefficient of a quantum gas from two-particle scattering amplitudeThe European Physical Journal A, 1967
- The three particle collision operator in quantum mechanicsPhysica, 1965
- The quantum theory of the non-ideal gas. II. Behaviour at low temperaturesPhysica, 1937
- The quantum theory of the non-ideal gas I. Deviations from the classical theoryPhysica, 1936