English

Numerical study of the Transverse Diffusion coefficient for a one component model of a plasma

Plasma Physics 2016-05-03 v1

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 TT and applied magnetic field B\vec B, in which the diffusion coefficient DD_{\perp} transverse to the field is estimated. We find that there exists a threshold in temperature, at which an inversion occurs, namely, for TT above the threshold the diffusion coefficient DD_{\perp} starts decreasing as TT increases. This is at variance with the behavior predicted by the Bohm law DT/BD_{\perp}\sim T/B, 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 1/B21/B^2, 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}
}