Zero-Turbulence Manifold in a Toroidal Plasma
Abstract
Sheared toroidal flows can cause bifurcations to zero-turbulent-transport states in tokamak plasmas. The maximum temperature gradients that can be reached are limited by subcritical turbulence driven by the parallel velocity gradient. Here it is shown that q/\epsilon (magnetic field pitch/inverse aspect ratio) is a critical control parameter for sheared tokamak turbulence. By reducing q/\epsilon, far higher temperature gradients can be achieved without triggering turbulence, in some instances comparable to those found experimentally in transport barriers. The zero-turbulence manifold is mapped out, in the zero-magnetic-shear limit, over the parameter space (\gamma_E, q/\epsilon, R/L_T), where \gamma_E is the perpendicular flow shear and R/L_T is the normalised inverse temperature gradient scale. The extent to which it can be constructed from linear theory is discussed.
Cite
@article{arxiv.1203.6455,
title = {Zero-Turbulence Manifold in a Toroidal Plasma},
author = {E. G. Highcock and A. A. Schekochihin and S. C. Cowley and M. Barnes and F. I. Parra and C. M. Roach and W. Dorland},
journal= {arXiv preprint arXiv:1203.6455},
year = {2015}
}
Comments
5 Pages, 4 Figures, Submitted to PRL