English

Secondary instability of electromagnetic ion-temperature-gradient modes for zonal flow generation

Plasma Physics 2015-05-27 v2

Abstract

An analytical model for zonal flow generation by toroidal ion-temperature-gradient (ITG) modes, including finite β\beta electromagnetic effects, is derived. The derivation is based on a fluid model for ions and electrons and takes into account both linear and nonlinear β\beta effects. The influence of finite plasma β\beta on the zonal flow growth rate (γZF\gamma_{ZF}) scaling is investigated for typical tokamak plasma parameters. The results show the importance of the zonal flows close to marginal stability where γZF/γITG>>1\gamma_{ZF}/\gamma_{ITG}>>1 is obtained. In this region the parameter γZF/γITG\gamma_{ZF}/\gamma_{ITG} increases with β\beta, indicating that the ITG turbulence and associated transport would decrease with β\beta at a faster rate than expected from a purely linear or quasi-linear analysis.

Keywords

Cite

@article{arxiv.1104.1995,
  title  = {Secondary instability of electromagnetic ion-temperature-gradient modes for zonal flow generation},
  author = {Johan Anderson and Hans Nordman and Rameswar Singh and Raghvendra Singh},
  journal= {arXiv preprint arXiv:1104.1995},
  year   = {2015}
}

Comments

RevTex 17 pages, 4 figures, submitted to Physics of Plasmas

R2 v1 2026-06-21T17:52:27.684Z