Perturbative out of equilibrium quantum field theory beyond the gradient approximation and generalized Boltzmann equation
Abstract
Using the closed-time-path formalism, we construct perturbative frameworks, in terms of quasiparticle picture, for studying quasiuniform relativistic quantum field systems near equilibrium and non-equilibrium quasistationary systems. We employ the derivative expansion and take in up to the second-order term, i.e., one-order higher than the gradient approximation. After constructing self-energy resummed propagator, we formulated two kind of mutually equivalent perturbative frameworks: The first one is formulated on the basis of the ``bare'' number density function, and the second one is formulated on the basis of ``physical'' number density function. In the course of construction of the second framework, the generalized Boltzmann equations directly come out, which describe the evolution of the system.
Cite
@article{arxiv.hep-ph/0311236,
title = {Perturbative out of equilibrium quantum field theory beyond the gradient approximation and generalized Boltzmann equation},
author = {H. Ozaki},
journal= {arXiv preprint arXiv:hep-ph/0311236},
year = {2009}
}
Comments
LaTeX2e, 20 pages