English

On the convergence of bootstrap current to the Shaing-Callen limit in stellarators

Plasma Physics 2025-02-19 v3

Abstract

Bootstrap current in stellarators can be presented as a sum of a collisionless value given by the Shaing-Callen asymptotic formula and an off-set current, which non-trivially depends on plasma collisionality and radial electric field. Using NEO-2 modelling, analytical estimates and semi-analytical studies with help of a propagator method, it is shown that the off-set current in the 1/ν1/\nu regime does not converge with decreasing collisionality ν\nu_\ast but rather shows oscillations over logν\log\nu_\ast with an amplitude of the order of the bootstrap current in an equivalent tokamak. The convergence to the Shaing-Callen limit appears in regimes with significant orbit precession, in particular, due to a finite radial electric field, where the off-set current decreases as ν3/5\nu_\ast^{3/5}. The off-set current strongly increases in case of nearly aligned magnetic field maxima on the field line where it diverges as ν1/2\nu_\ast^{-1/2} in the 1/ν1/\nu regime and saturates due to the precession at a level exceeding the equivalent tokamak value by vE1/2{v_E^\ast}^{-1/2} where vEv_E^\ast is the perpendicular Mach number. The latter off-set, however, can be minimized by further aligning local magnetic field maxima and by fulfilling an extra integral condition of ``equivalent ripples'' for the magnetic field. A criterion for the accuracy of this alignment and of ripple equivalence is derived. In addition, the possibility of the bootstrap effect at the magnetic axis caused by the above off-set is also discussed.

Keywords

Cite

@article{arxiv.2407.21599,
  title  = {On the convergence of bootstrap current to the Shaing-Callen limit in stellarators},
  author = {Christopher G. Albert and Craig D. Beidler and Gernot Kapper and Sergei V. Kasilov and Winfried Kernbichler},
  journal= {arXiv preprint arXiv:2407.21599},
  year   = {2025}
}

Comments

64 pages, 31 figures, talk at European Fusion Theory Conference 2023, Padua