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High resolution measurements of core density collapse dynamics in LHD

R Sassella, D J Den Hartog, A M Wright, Y Takemura, H Funaba, N Kenmochi, J Sarff, Y Suzuki, K Tanaka, H Uehara2026年6月Plasma Physics and Controlled FusionIF 2.2出版社

The core density collapse (CDC) is an abrupt instability that degrades the performance of super dense core stellarator plasmas on the Large Helical Device (LHD). In LHD, CDCs have proved to be an operational limit in so-called outward-shifted configurations. New measurements with high time resolution Thomson scattering characterize dynamics of the instability in the core. The density profile is observed to collapse inwards, narrowing the density peak till the core itself collapses. A hot, radially localized feature is also observed in the electron temperature profile during the collapse and disappears within a few hundred microseconds of CDC onset.

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LHD

AIによる論文要約

LHDにおけるコア密度崩壊ダイナミクスの高分解能計測
JA核融合プラズマの不安定性に興味がある学生や研究者。特にLHDの高密度運転限界を理解したい方。#核融合 #LHD #プラズマ不安定性 #コア密度崩壊 #トムソン散乱
LLM向け: {"Title": "LHDにおけるコア密度崩壊の高分解能計測", "Authors": "unknown", "Research Objective": "大…

大型ヘリカル装置(LHD)では、超高密度コアプラズマにおいて突然の不安定性「コア密度崩壊(CDC)」が発生し、性能が低下します。特に外向きシフト配位で顕著です。本研究では、高時間分解トムソン散乱計測を用いてCDCのダイナミクスを詳細に観測しました。密度分布は内側に向かって崩壊し、コアが崩壊するまで密度ピークが狭まります。また、崩壊中に電子温度に局所的な高温領域が現れ、CDC開始後数百マイクロ秒で消失します。この結果は、CDCの物理メカニズム理解に役立ちます。

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