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Journal ArticleDOI

More on core‐localized toroidal Alfvén eigenmodes

TLDR
In this article, a novel ideal toroidal Alfven eigenmode, localized in the low-shear core region of a tokamak plasma, is shown to exist, whose frequency is near the upper continuum of the toroidal gap.
Abstract
A novel type of ideal toroidal Alfven eigenmode, localized in the low‐shear core region of a tokamak plasma, is shown to exist, whose frequency is near the upper continuum of the toroidal Alfven gap. This mode converts to a kinetic‐type toroidal Alfven eigenmode above a critical threshold that depends on aspect ratio, pressure gradient, and shear. Opposite to the usual ideal toroidal Alfven eigenmode, this new mode is peaked in amplitude on the small‐major‐radius side of the plasma.

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Citations
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Journal ArticleDOI

Physics of Alfvén waves and energetic particles in burning plasmas

TL;DR: In this article, the interactions of these energetic particles with linear and nonlinear Alfve'n waves generated in the magnetized plasma are reviewed, and the interaction of the alpha particles produced in the nuclear reactions is discussed.
Journal ArticleDOI

Energetic particle physics in fusion research in preparation for burning plasma experiments

TL;DR: A broad review of the progress that has been made in EP physics in tokamaks and spherical tori since the first DT experiments on TFTR and JET (Joint European Torus), including stellarator/helical devices is given in this article.
Journal ArticleDOI

A review of Alfvén eigenmode observations in toroidal plasmas

TL;DR: In toroidal magnetically confined plasmas, eigenmodes of Alfven waves can be destablized by energetic ions with velocities comparable to the Alfven velocity as discussed by the authors.
Journal ArticleDOI

Energetic ions in ITER plasmas

TL;DR: In this article, the stability of the Alfven Eigenmodes in the ITER 15 MA baseline scenario was investigated and it was found that only in the outer half of the plasma (r/a>0.5) can the fast ions overcome the thermal ion Landau damping.
References
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TAE modes and MHD activity in TFTR DT plasmas

TL;DR: In this article, high power deuterium and tritium experiments on TFTR have produced fusion parameters similar to those expected on ITER, with the possible exception of Toroidal Alfven Eigenmodes (TAE).
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