Geometric scalings for the electrostatically driven helical plasma state
Abstract
A new plasma state has been investigated [C.~Akcay, J.~Finn, R.~Nebel and D.~Barnes, Phys.~Plasmas , 052503 (2017)], with a uniform applied axial magnetic field in a periodic cylinder of length , driven by helical electrodes. The drive is single helicity, depending on , where and . For strong drive the state was found to have a strong axial mean current density, with a mean-field safety factor just above the pitch of the electrodes in the interior. This state has possible applications to DC electrical transformers and tailoring of the current profile in tokamaks. We study two geometric issues of interest for these applications: (i) scaling of properties with the plasma length or aspect ratio; and (ii) behavior for different helicities, specifically for and .
Cite
@article{arxiv.1711.01242,
title = {Geometric scalings for the electrostatically driven helical plasma state},
author = {Cihan Akçay and John M. Finn and Richard A. Nebel and Daniel C. Barnes},
journal= {arXiv preprint arXiv:1711.01242},
year = {2018}
}