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Broad wavenumber turbulence measurement in the same region on EAST

N Sun, Y D Li, P Li, F Chen, J S Geng, Y X Li, P J Sun, S F Wang, J S Hu2025年1月Plasma Physics and Controlled FusionIF 2.2出版社

Future burning plasma in magnetic confinement fusion devices necessitates diagnostic for measuring broad wavenumber turbulence. The CO2 laser collective Thomson scattering (CO2-CTS) system on EAST is designed mainly for electron-scale turbulence measurements. In order to extend the capability to detect ion-scale turbulence, the key challenges of light separation and signal detection have been successfully addressed by the construction of the extremely-small-angle CO2-CTS (E-CTS) diagnostic. This paper employs the CO2-CTS in conjunction with the E-CTS, enabling the simultaneous monitoring of turbulence () over a broader wavenumber range (k ∼ 5–30 cm−1) within the gradient region (). The application of E-CTS studies the characteristics of multi-scale turbulence, including turbulence correlation and dispersion relations. This advancement will significantly enrich our experimental comprehension of tokamak turbulence.

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AIによる論文要約

EASTにおける広範囲の波数領域の乱流計測
JAこの論文は、核融合プラズマの乱流計測に関心のある研究者や学生に有益です。特に、先進的な乱流診断技術の開発と応用に取り組む研究者にとって重要な知見が得られるでしょう。#トカマク #乱流計測 #CO2レーザー #集団トムソン散乱
LLM向け: {'Title': '広範囲の波数領域の乱流計測in EAST', 'Author(s)': '不明', 'Research Objective': 'EAST…

この論文では、EASTトカマクにおける電子スケールおよびイオンスケールの乱流を同時に計測する手法について報告しています。CO2レーザーを用いた集団トムソン散乱法により、5-30 cm-1の広範囲の波数領域の乱流特性を明らかにしています。この技術的進歩は、トカマク乱流の理解を大きく深化させるものです。

Broad wavenumber turbulence measurement in the same region on EAST
ENThis paper should be read by fusion researchers interested in turbulence measurements and diagnostics, as well as students studying plasma physics and fusion energy.#TurbulenceMeasurement #MultiScaleTurbulence #FusionDiagnostics #EAST
LLM向け: {'Title': 'Broad wavenumber turbulence measurement in the same region on EAST', …

This paper describes a diagnostic system that can simultaneously measure turbulence at both electron and ion scales in the EAST tokamak. The system combines CO2 laser collective Thomson scattering (CO2-CTS) and an extremely-small-angle CO2-CTS (E-CTS) to cover a broad wavenumber range, enabling a better understanding of multi-scale turbulence in tokamaks.

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