Numerical study of the Transverse Diffusion coefficient for a one component model of a plasma
Abstract
We report the results of MD numerical simulations for a one component model of a plasma in the weakly coupled regime, at different values of temperature and applied magnetic field , in which the diffusion coefficient transverse to the field is estimated. We find that there exists a threshold in temperature, at which an inversion occurs, namely, for above the threshold the diffusion coefficient starts decreasing as increases. This is at variance with the behavior predicted by the Bohm law , which actually holds below the threshold. In addition we find that, for temperatures above such a threshold, another transition occurs, now with respect to the values of the magnetic field: for weak magnetic fields the diffusion coefficients scales as , in agreement with the predictions of the standard kinetics theory, while it apparently saturates when the field strength is sufficiently increased.
Keywords
Cite
@article{arxiv.1605.00235,
title = {Numerical study of the Transverse Diffusion coefficient for a one component model of a plasma},
author = {Lorenzo Valvo and Andrea Carati},
journal= {arXiv preprint arXiv:1605.00235},
year = {2016}
}