Green-Kubo formula for Boltzmann and Fermi-Dirac statistics
Abstract
Shear viscosity of nuclear matter is extracted via the Green-Kubo formula and the Gaussian thermostated SLLOD algorithm (the shear rate method) in a periodic box by using an improved quantum molecular dynamic (ImQMD) model without mean field, also it is calculated by a Boltzmann-type equation. Here a new form of the Green-Kubo formula is put forward in the present work. For classical limit at nuclear matter densities of and , shear viscosity by the traditional and new form of the Green-Kubo formula as well as the SLLOD algorithm are coincident with each other. However, for non-classical limit, shear viscosity by the traditional form of the Green-Kubo formula is higher than those obtained by the new form of the Green-Kubo formula as well as the SLLOD algorithm especially in low temperature region. In addition, shear viscosity from the Boltzmann-type equation is found to be less than that by the Green-Kubo method or the SLLOD algorithm for both classical and non-classical limits.
Keywords
Cite
@article{arxiv.2109.09631,
title = {Green-Kubo formula for Boltzmann and Fermi-Dirac statistics},
author = {X. G. Deng and Y. G. Ma and Y. X. Zhang},
journal= {arXiv preprint arXiv:2109.09631},
year = {2021}
}
Comments
8 pags, 5 figures