December 2023

Journal

Low-frequency whistler waves in quiescent runaway electron plasmas

By:
Heidbrink, W. W.; Paz-Soldan, Carlos; Spong, Donald A; Thome, K.; Austin, M.; Lvovskiy, Andreas; Pinsker, R.; Van Zeeland, Michael; Moyer, Richard; Du, X
Journal Name:
Plasma Physics and Controlled Fusion
Page Number:
014007
Volume:
61
Issue Number:
1
Publication Date:
December 2023
View DOI Listing:
https://doi.org/10.1088/1361-6587/aae2da

Abstract

In quiescent runaway electron plasmas in the DIII-D tokamak, whistler waves with frequencies between 90 and 200 MHz are driven unstable in plasmas with appreciable hard x-ray and non-thermal electron cyclotron emission (ECE). Narrow (δf < 50 kHz) discrete modes with erratically spaced frequencies are observed. Unstable modes often extend over a range Δf sime 50 MHz but lower frequency unstable modes are usually most intense. The dependency of the frequency on field and density implies a wavenumber k sime 150 m−1 with parallel wavenumber k ∥ Lt k. Reducing the gap between the plasma and the wall increases the number of detected modes. Lowering the magnetic field promotes instability. Nonlinear limit-cycle-like oscillations in the whistler amplitude occur on a 10 ms timescale. The ECE signals often jump at whistler bursts, suggesting that the modes pitch-angle scatter the runaways. Sawteeth cause transient stabilization of the whistlers.


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