Self-consistent equilibrium of a helical magnetic flux rope in a finite-pressure plasma

Author:

Cheremnykh Oleg K.1ORCID,Fedun Viktor2ORCID,Lashkin Volodymyr M.13ORCID

Affiliation:

1. Space Research Institute 1 , Pr. Glushkova 40 k.4/1, Kyiv 03187, Ukraine

2. Plasma Dynamics Group, Department of Automatic Control and Systems Engineering, The University of Sheffield 2 , Sheffield S1 3JD, United Kingdom

3. Institute for Nuclear Research 3 , Pr. Nauki 47, Kyiv 03028, Ukraine

Abstract

We present an analytical model of the self-consistent equilibrium of a magnetic flux rope, which is obtained in cylindrical geometry. The equilibrium quantities, namely, the azimuthal magnetic field and plasma pressure, are determined in a self-consistent way through the current density, which is derived as a solution of a nonlinear equation. By minimizing the energy functional, it was shown that the constrained equilibrium state is stable. The obtained results are also applicable to the cylindrical tokamak magnetic configurations. It is shown that the analytically predicted radial profiles of equilibrium quantities are in good agreement with the experimental data.

Funder

Science and Technology Facilities Council

The Royal Society International Exchanges Scheme

Publisher

AIP Publishing

Subject

Condensed Matter Physics

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