Non-Equilibrium Thermo Field Dynamics for Relativistic Complex Scalar and Dirac Fields
High Energy Physics - Theory
2015-06-03 v2
Abstract
Relativistic quantum field theories for complex scalar and Dirac fields are investigated in non-equilibrium thermo field dynamics. The thermal vacuum is defined by the Bogoliubov transformed creation and annihilation operators. Two independent Bogoliubov parameters are introduced for a charged field. Its difference naturally induces the chemical potential. Time-dependent thermal Bogoliubov transformation generates the thermal counter terms. We fix the terms by the self-consistency renormalization condition. Evaluating the thermal self-energy under the self-consistency renormalization condition, we derive the quantum Boltzmann equations for the relativistic fields.
Cite
@article{arxiv.1111.7083,
title = {Non-Equilibrium Thermo Field Dynamics for Relativistic Complex Scalar and Dirac Fields},
author = {Yuichi Mizutani and Tomohiro Inagaki},
journal= {arXiv preprint arXiv:1111.7083},
year = {2015}
}
Comments
41 pages,2 figures