Isotope Effects on TEM-driven Turbulence and Zonal Flows in Helical and Tokamak Plasmas

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Main Authors: Nakata, Motoki, Nunami, Masanori, Sugama, Hideo, Watanabe, Tomo-Hiko
Format: Preprint
Published: 2026
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_version_ 1866908853605498880
author Nakata, Motoki
Nunami, Masanori
Sugama, Hideo
Watanabe, Tomo-Hiko
author_facet Nakata, Motoki
Nunami, Masanori
Sugama, Hideo
Watanabe, Tomo-Hiko
contents Impacts of isotope ion mass on trapped electron mode (TEM) driven turbulence and zonal flows in magnetically confined fusion plasmas are investigated. Gyrokinetic simulations of TEM-driven turbulence in three-dimensional magnetic configuration of LHD plasmas with hydrogen isotope ions and real-mass kinetic electrons are realized for the first time, and the linear and the nonlinear nature of the isotope and collisional effects on the turbulent transport and zonal-flow generation is clarified. It is newly found that combined effects of the collisional TEM stabilization by the isotope ions and the associated increase in the impacts of the steady zonal flows at the near-marginal linear stability lead to the significant transport reduction with the opposite ion mass dependence in comparison to the conventional gyro-Bohm scaling. The universal nature of the isotope effects on the TEM-driven turbulence and zonal flows is verified for a wide variety of toroidal plasmas, e.g., axisymmetric tokamak and non-axisymmetric helical/stellarator systems.
format Preprint
id arxiv_https___arxiv_org_abs_2602_22655
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Isotope Effects on TEM-driven Turbulence and Zonal Flows in Helical and Tokamak Plasmas
Nakata, Motoki
Nunami, Masanori
Sugama, Hideo
Watanabe, Tomo-Hiko
Plasma Physics
Impacts of isotope ion mass on trapped electron mode (TEM) driven turbulence and zonal flows in magnetically confined fusion plasmas are investigated. Gyrokinetic simulations of TEM-driven turbulence in three-dimensional magnetic configuration of LHD plasmas with hydrogen isotope ions and real-mass kinetic electrons are realized for the first time, and the linear and the nonlinear nature of the isotope and collisional effects on the turbulent transport and zonal-flow generation is clarified. It is newly found that combined effects of the collisional TEM stabilization by the isotope ions and the associated increase in the impacts of the steady zonal flows at the near-marginal linear stability lead to the significant transport reduction with the opposite ion mass dependence in comparison to the conventional gyro-Bohm scaling. The universal nature of the isotope effects on the TEM-driven turbulence and zonal flows is verified for a wide variety of toroidal plasmas, e.g., axisymmetric tokamak and non-axisymmetric helical/stellarator systems.
title Isotope Effects on TEM-driven Turbulence and Zonal Flows in Helical and Tokamak Plasmas
topic Plasma Physics
url https://arxiv.org/abs/2602.22655