English

Multi-particle collision simulations of 2D one-component plasmas: anomalous transport and dimensional crossovers

Plasma Physics 2017-04-17 v3 Statistical Mechanics

Abstract

By means of hybrid multi-particle collsion--particle-in-cell (MPC-PIC) simulations we study the dynamical scaling of energy and density correlations at equilibrium in moderately coupled 2D and quasi 1D plasmas. We find that the predictions of Nonlinear Fluctuating Hydrodynamics for the structure factors of density and energy fluctuations in 1D systems with three global conservation laws hold true also for two dimensional systems that are more extended along one of the two spatial dimensions. Moreover, from the analysis of the equilibrium energy correlators and density structure factors of both 1D and 2D neutral plasmas, we find that neglecting the contribution of the fluctuations of the vanishing self-consistent electrostatic fields overestimates the interval of frequencies over which the anomalous transport is observed. Such violations of the expected scaling in the currents correlation are found in different regimes, hindering the observation of the asymptotic scaling predicted by the theory.

Keywords

Cite

@article{arxiv.1610.10047,
  title  = {Multi-particle collision simulations of 2D one-component plasmas: anomalous transport and dimensional crossovers},
  author = {Pierfrancesco Di Cintio and Roberto Livi and Stefano Lepri and Guido Ciraolo},
  journal= {arXiv preprint arXiv:1610.10047},
  year   = {2017}
}

Comments

13 pages, 10 figures. Submitted to Phys.Rev.E, comments welcome