English

Geometric scalings for the electrostatically driven helical plasma state

Plasma Physics 2018-01-17 v1

Abstract

A new plasma state has been investigated [C.~Akcay, J.~Finn, R.~Nebel and D.~Barnes, Phys.~Plasmas 24\textbf{24}, 052503 (2017)], with a uniform applied axial magnetic field in a periodic cylinder of length L=2πRL=2\pi R, driven by helical electrodes. The drive is single helicity, depending on mθ+kz=mθnζm\theta+kz=m\theta-n\zeta, where ζ=z/R\zeta=z/R and k=n/Rk=-n/R. For strong (m,n)=(1,1)(m,n)=(1,1) drive the state was found to have a strong axial mean current density, with a mean-field safety factor q0(r)q_0(r) just above the pitch of the electrodes m/n=1m/n=1 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 (m,n)=(1,n)(m,n)=(1,n) for n>1n>1 and (m,n)=(2,1)(m,n)=(2,1).

Keywords

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}
}
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