Formation of current singularity in a topologically constrained plasma
Abstract
Recently a variational integrator for ideal magnetohydrodynamics in Lagrangian labeling has been developed. Its built-in frozen-in equation makes it optimal for studying current sheet formation. We use this scheme to study the Hahm-Kulsrud-Taylor problem, which considers the response of a 2D plasma magnetized by a sheared field under sinusoidal boundary forcing. We obtain an equilibrium solution that preserves the magnetic topology of the initial field exactly, with a fluid mapping that is non-differentiable. Unlike previous studies that examine the current density output, we identify a singular current sheet from the fluid mapping. These results are benchmarked with a constrained Grad-Shafranov solver. The same signature of current singularity can be found in other cases with more complex magnetic topologies.
Cite
@article{arxiv.1509.08163,
title = {Formation of current singularity in a topologically constrained plasma},
author = {Yao Zhou and Yi-Min Huang and Hong Qin and A. Bhattacharjee},
journal= {arXiv preprint arXiv:1509.08163},
year = {2016}
}
Comments
5 pages, 2 figures