Modeling transport in weakly collisional plasmas using thermodynamic forcing

ORAL  · Invited

Abstract

How momentum, energy, and magnetic fields are transported in the presence of macroscopic gradients is a fundamental question in plasma physics. Answering this question is especially challenging for weakly collisional, magnetized plasmas, where macroscopic gradients influence the plasma's microphysical structure. In this talk, we introduce thermodynamic forcing, a new method for systematically modeling how macroscopic gradients in magnetized or unmagnetized plasmas shape the distribution functions of constituent particles. In this method, we propose to apply an anomalous force to those particles inducing the anisotropy that would naturally emerge due to macroscopic gradients in weakly collisional plasmas. We implement thermodynamic forcing in particle-in-cell (TF-PIC) simulations using a modified Vay particle pusher and validate it against analytic solutions of the equations of motion. We then carry out a series of simulations of electron-proton plasmas with periodic boundary conditions using TF-PIC. First, we confirm that the properties of two electron-scale kinetic instabilities -- one driven by a temperature gradient and the other by pressure anisotropy -- are consistent with previous results. Then, we demonstrate that in the presence of multiple macroscopic gradients, the saturated state can differ significantly from current expectations. This work enables, for the first time, systematic and self-consistent transport modeling in weakly collisional plasmas, with broad applications in astrophysics, laser-plasma physics, and inertial confinement fusion.

*This research was supported primarily by the UKRI (grant number MR/W006723/1) and also in part by grant NSF PHY-2309135 to the Kavli Institute for Theoretical Physics (KITP). All simulations reported in this work have been carried out with OSIRIS using high-performance computing resources from Advanced Research Computing (ARC), University of Oxford.

Publication: https://arxiv.org/abs/2504.14000
Title: Modeling transport in weakly collisional plasmas using thermodynamic forcing

Presenters

  • Prakriti PalChoudhury

    • University of Oxford

Authors

  • Prakriti PalChoudhury

    • University of Oxford
  • Archie F.A. Bott

    • University of Oxford