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Interpretation of fast-ion signals during beam modulation experiments

W.W. Heidbrink, C.S. Collins, L. Stagner, Y.B. Zhu, C.C. Petty, M.A. Van Zeeland2016年被引用 11Nuclear FusionIF 3出版社

Fast-ion signals produced by a modulated neutral beam are used to infer fast-ion transport. The measured quantity is the divergence of perturbed fast-ion flux from the phase-space volume measured by the diagnostic, . Since velocity-space transport often contributes to this divergence, the phase-space sensitivity of the diagnostic (or 'weight function') plays a crucial role in the interpretation of the signal. The source and sink make major contributions to the signal but their effects are accurately modelled by calculations that employ an exponential decay term for the sink. Recommendations for optimal design of a fast-ion transport experiment are given, illustrated by results from DIII-D measurements of fast-ion transport by Alfvén eigenmodes. The signal-to-noise ratio of the diagnostic, systematic uncertainties in the modeling of the source and sink, and the non-linearity of the perturbation all contribute to the error in .

日本語訳

高速イオン輸送は、変調された中性粒子ビームによって生成される高速イオン信号を用いて推定される。測定される量は、診断装置によって測定される位相空間体積からの摂動高速イオンフラックスの発散である。速度空間輸送がこの発散に寄与することが多いため、診断装置の位相空間感度(すなわち重み関数)が信号の解釈において重要な役割を果たす。源と消滅は信号に大きく寄与するが、その影響は、消滅に対する指数減衰項を用いた計算によって正確にモデル化される。高速イオン輸送実験の最適設計に関する推奨事項が、DIII-Dにおけるアルヴェン固有モードによる高速イオン輸送の測定結果を用いて示される。診断装置の信号対雑音比、源と消滅のモデル化における系統的不確かさ、および摂動の非線形性は、すべて誤差に寄与する。

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diii-d低精度(概要文一致)

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