4.5 Article

Prompt non-resonant neutral beam-ion loss induced by Alfven eigenmodes in the DIII-D tokamak

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NUCLEAR FUSION
卷 53, 期 12, 页码 -

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IOP PUBLISHING LTD
DOI: 10.1088/0029-5515/53/12/123019

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资金

  1. US Department of Energy [DE-FG03-94ER54271, DE-AC02-09CH11466, DE-FC02-04ER54698, DE-FG03-97ER-54415]
  2. DIII-D Team

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Prompt neutral beam-ion loss due to non-resonant scattering caused by toroidicity-induced and reversed shear Alfven eigenmodes (TAE/RSAEs) have been observed in DIII-D. The coherent losses are of full-energy beam ions born on unperturbed trapped orbits that would carry them close to a fast-ion loss detector (FILD) within one poloidal transit. However, in the presence of AEs, the particles are expelled from the plasma before completing their first poloidal orbits. The loss signals on FILD emerge within 100 mu s after the beam switch-on (which is the time scale of a single poloidal transit) and oscillate at mode frequencies. Time-resolved loss measurements show a linear dependence on the AE fluctuation amplitude and a radial 'kick' of similar to 10 cm by an n = 2 RSAE at delta B/B <= 1 x 10(-3) can be directly inferred from the measurements. Full-orbit modelling of the fast-ion displacement caused by the AEs is in good quantitative agreement with the measurements. Direct interactions of the mode and the beam-ion orbit can account for a large fraction of fast-ion losses observed in such DIII-D discharges. The first orbit non-resonant loss mechanism may also contribute to enhanced localized losses in ITER and future reactors. A new diagnostic method of the radial displacement is inspired by these findings and can be used to study the interaction between fast ions and various MHD modes as well as three-dimensional fields.

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