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Generation and dissipation of runaway electrons in ASDEX Upgrade experiments

G. Pautasso, M. Dibon, M. Dunne, R. Dux, E. Fable, P. Lang, O. Linder, A. Mlynek, G. Papp, M. Bernert2020年被引用 18Nuclear FusionIF 3出版社

The paper describes under which plasma and machine conditions runaway electrons (REs) are generated during ASDEX Upgrade plasma disruptions. The REs are created by argon injection to investigate methods of current and energy dissipation. The RE beams are stable and last up to a few hundred milliseconds. The experimental findings are described and made available for the validation of theoretical models. In the following, a simple 0D fluid model is used to simulate the observed RE current magnitude and time behavior. In spite of its simplicity, the model is consistent with the measured RE current. The injection of heavy gases into the RE beam is then discussed in some detail: the injected gas penetrates into the low density background plasma and through the beam without ionizing significantly. Therefore its effect on the REs can be tested directly and it is found to be consistent with the known Coulomb collisional theory.

日本語訳

本論文は、ASDEX Upgradeプラズマディスラプション中に逃走電子(RE)がどのようなプラズマおよび装置条件下で生成されるかを記述する。REは電流およびエネルギー消散の方法を調査するためにアルゴン入射によって生成される。REビームは安定であり、最大数百ミリ秒間持続する。実験的知見が記述され、理論モデルの検証に利用可能とされる。以下では、単純な0次元流体モデルを用いて、観測されたRE電流の大きさと時間挙動をシミュレートする。その単純さにもかかわらず、モデルは測定されたRE電流と整合する。REビームへの重ガス入射について、その後詳細に議論される:入射されたガスは低密度の背景プラズマおよびビーム中を、有意に電離することなく浸透する。したがって、そのREへの影響は直接的に試験でき、既知のクーロン衝突理論と整合することが見出される。

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