English

Ion temperature gradient instability at sub-Larmor radius scales with non-zero ballooning angle

Plasma Physics 2013-04-22 v1

Abstract

Linear gyro-kinetic stability calculations predict unstable toroidal Ion Temperature Gradient modes with normalised poloidal wave vectors well above one (kθρi>1k_\theta \rho_i > 1) for standard parameters and with adiabatic electrons. These modes have a maximum amplitude at a poloidal angle θ\theta that is shifted away from the low field side (θ0\theta \ne 0). The physical mechanism is clarified through the use of a fluid model. It is shown that the shift of the mode away from the low field side (θ0\theta \ne 0) reduces the effective drift frequency, and allows for the instability to develop. Numerical tests using the gyro-kinetic model confirm this physical mechanism. It is furthermore shown that modes with θ0\theta \ne 0 can be important also for kθρi<1k_\theta \rho_i < 1 close to the threshold of the ITG. In fact, modes with θ0\theta \ne 0 can exist for normalised temperature gradient lengths below the threshold of the ITG obtained for θ=0\theta = 0.

Keywords

Cite

@article{arxiv.1211.2692,
  title  = {Ion temperature gradient instability at sub-Larmor radius scales with non-zero ballooning angle},
  author = {Pierluigi Migliano and Yann Camenen and Francis Casson and William Hornsby and Arthur Peeters},
  journal= {arXiv preprint arXiv:1211.2692},
  year   = {2013}
}
R2 v1 2026-06-21T22:36:56.553Z