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Recent progress in understanding the behavior of dust in fusion devices

S I Krasheninnikov, A Yu Pigarov, R D Smirnov, M Rosenberg, Y Tanaka, D J Benson, T K Soboleva, T D Rognlien, D A Mendis, B D Bray2008年Plasma Physics and Controlled FusionIF 2.2出版社

It has been known for a long time that microscopic dust appears in plasmas in fusion devices. Recently it was shown that dust can be responsible for the termination of long- discharges. Also, in ITER-scale experiments dust can pose safety problems related to its chemical activity, tritium retention and radioactive content. In particular, the presence of dust in the vacuum chamber of ITER is one of the main concerns of the ITER licensing process. Here we review recent progress in the understanding of different experimental and theoretical aspects of the physics of dust dynamics and transport in fusion plasmas and discuss the remaining issues.

日本語訳

核融合装置のプラズマ中に微細なダストが存在することは、古くから知られていた。近年、このダストが長時間放電の終止の原因となり得ることが示された。また、ITER規模の実験において、ダストはその化学的活性、トリチウム保持、および放射性含有量に関連する安全上の問題を引き起こす可能性がある。特に、ITERの真空容器内におけるダストの存在は、ITERの許認可プロセスにおける主要な懸念事項の一つである。本稿では、核融合プラズマにおけるダストの動力学と輸送の物理に関する実験的および理論的側面の最近の進展を概説し、残された課題について議論する。

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