English

Stellarators close to quasisymmetry

Plasma Physics 2015-06-16 v3

Abstract

Rotation is favorable for confinement, but a stellarator can rotate at high speeds if and only if it is sufficiently close to quasisymmetry. This article investigates how close it needs to be. For a magnetic field B=B0+αB1\mathbf{B} = \mathbf{B}_0 + \alpha \mathbf{B}_1, where B0\mathbf{B}_0 is quasisymmetric, αB1\alpha\mathbf{B}_1 is a deviation from quasisymmetry, and α1\alpha\ll 1, the stellarator can rotate at high velocities if α<ϵ1/2\alpha < \epsilon^{1/2}, with ϵ\epsilon the ion Larmor radius over the characteristic variation length of B0\mathbf{B}_0. The cases in which this result may break down are discussed. If the stellarator is sufficiently quasisymmetric in the above sense, the rotation profile, and equivalently, the long-wavelength radial electric field, are not set neoclassically; instead, they can be affected by turbulent transport. Their computation requires the O(ϵ2)O(\epsilon^2) pieces of both the turbulent and the long-wavelength components of the distribution function. This article contains the first step towards a formulation to calculate the rotation profile by providing the equations determining the long-wavelength components of the O(ϵ2)O(\epsilon^2) pieces.

Keywords

Cite

@article{arxiv.1307.3393,
  title  = {Stellarators close to quasisymmetry},
  author = {Ivan Calvo and Felix I. Parra and J. L. Velasco and J. Arturo Alonso},
  journal= {arXiv preprint arXiv:1307.3393},
  year   = {2015}
}

Comments

59 pages, 2 figures. arXiv admin note: text overlap with arXiv:1204.1509

R2 v1 2026-06-22T00:50:21.735Z