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  • Letter

Importance of gyrokinetic exact Fokker-Planck collisions in fusion plasma turbulence

Qingjiang Pan* and Darin R. Ernst†

David R. Hatch

  • Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA

  • Institute for Fusion Studies, University of Texas at Austin, Austin, Texas 78712, USA

  • *panqj@psfc.mit.edu
  • †dernst@psfc.mit.edu

Phys. Rev. E 103, L051202 – Published 17 May, 2021

DOI: https://doi.org/10.1103/PhysRevE.103.L051202

Abstract

Gyrokinetic simulations of turbulence are fundamental to understanding and predicting particle and energy loss in magnetic fusion devices. Previous works have used model collision operators with approximate field-particle terms of unknown accuracy and/or have neglected collisional finite Larmor radius effects. This work moves beyond models to demonstrate important corrections using a gyrokinetic Fokker-Planck collision operator with the exact field-particle terms, in realistic simulations of turbulence in magnetically confined fusion plasmas. The exact operator shows significant corrections for temperature-gradient-driven trapped electron mode turbulence and zonal flow damping, and for microtearing modes in a Joint European Torus pedestal under ITER-like wall conditions. Analysis of the corrections using parameter scans motivates an accurate model which closely reproduces the exact results while reducing computational demands.

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