A comprehensive gyrokinetic description of global electrostatic microinstabilities in a tokamak

10Citations
Citations of this article
8Readers
Mendeley users who have this article in their library.

Abstract

It is believed that low frequency microinstabilities such as ion temperature gradient (ITG) driven modes and trapped electron modes (TEMs) are largely responsible for the experimentally observed anomalous transport via the ion and electron channels in a tokamak. In the present work, a comprehensive global linear gyrokinetic model incorporating fully kinetic (trapped and passing) electrons and ions, actual ion to electron mass ratio, radial coupling, and profile variation is used to investigate the ITG driven modes and pure TEMs. These modes are found to exhibit multiscale structures in the presence of nonadiabatic passing electrons. The multiscale structure is related to the large nonadiabaticity of electrons in the vicinity of mode rational magnetic surfaces and leads to reduced mixing length estimates of transport compared to those obtained from adiabatic electron models. © 2009 American Institute of Physics.

Cite

CITATION STYLE

APA

Chowdhury, J., Ganesh, R., Brunner, S., Vaclavik, J., Villard, L., & Angelino, P. (2009). A comprehensive gyrokinetic description of global electrostatic microinstabilities in a tokamak. In Physics of Plasmas (Vol. 16). https://doi.org/10.1063/1.3134022

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free