FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Triple Cherenkov probe measurements on FTU: calibration and runaway energy spectra

F Bagnato, A Romano, P Buratti, A Doria, L Gabellieri, E Giovenale, A Grosso, L Jakubowski, D Pacella, V Piergotti2018年Plasma Physics and Controlled FusionIF 2.2出版社

Characterization and calibration measurements of two Cherenkov probes have been performed in ENEA Frascati's laboratories. Different kinds of radiation have been used, from visible light to x-rays, in order to evaluate possible spurious responses of the probes. Moreover, a preliminary calibration is presented, as well as a first evaluation of the minimum single probe's detectable flux performed through an electron beam of 2.3 MeV. Additional results have been obtained thanks to spectrometry analysis, which gave deeper insights of the phenomena occurring inside the probes. In particular, a continuous emission spectrum, associated to cathodoluminescence, has been observed to dominate in the Cherenkov range, showing that scintillating phenomena are not negligible in this kind of probes. Results on non-thermal electron losses from recent FTU experimental campaigns are also presented. The signals acquired are compared to those from other diagnostics like x-rays, neutron and gamma detectors or plasma magnetic activity, showing good correlation between them. The analysis focuses on the capability and sensitivity of the probes to measure runaway electrons losses with energy discrimination in presence of perturbations due to kinetic and magnetic reconnection phenomena.

日本語訳

ENEAフラスカティ研究所において、2つのチェレンコフプローブの特性評価および較正測定が実施された。プローブの潜在的な偽応答を評価するため、可視光からX線までの異なる種類の放射線が使用された。さらに、2.3 MeVの電子ビームを用いて実施されたプローブ単体の最小検出可能フラックスの初期的評価とともに、予備的な較正が提示されている。分光分析により追加の結果が得られ、プローブ内部で生じる現象についてより深い知見がもたらされた。特に、チェレンコフ領域において連続発光スペクトルが支配的であることが観測され、この種のプローブにおいてシンチレーション現象が無視できないことが示された。最近のFTU実験キャンペーンからの非熱電子損失に関する結果も提示されている。取得された信号は、X線、中性子、ガンマ線検出器やプラズマ磁気診断などの他の診断装置からの信号と比較され、それらの間に良好な相関が示された。本解析は、運動学的および磁気リコネクション現象に起因する摂動の存在下において、エネルギー識別を伴う逃走電子損失を測定するプローブの能力と感度に焦点を当てている。

wiki

FTU
この論文にはまだAI要約がありません。

関連論文

Cherenkov emission provides detailed picture of non-thermal electron dynamics in the presence of magnetic islands

2015Nuclear Fusion

Analysis of runaway electron expulsion during tokamak instabilities detected by a single-channel Cherenkov probe in FTU

2019Nuclear Fusion

Diffusion of trapped reversed magnetic field in a theta pinch in the presence of a probe

1964Nuclear Fusion

3D particle-in-cell modeling of Langmuir probe effective collecting area in magnetized plasma

2018Plasma Physics and Controlled Fusion

Sensitivity of electron temperature measurements with the tunnel probe to a fast electron component

2007Plasma Physics and Controlled Fusion

Overview of the FTU results

2019Nuclear Fusion

Study of ion sheath expansion and anisotropy of the electron parallel energy distribution in the CASTOR tokamak

2007Plasma Physics and Controlled Fusion

Fast particle diagnostics at JET: status and plans

1995Nuclear Fusion

Polarized pyrometric probe: principles of operation and measurement of plasma particle energy

1966Nuclear Fusion

Measurements of hot electrons in the Extrap T1 reversed-field pinch

1998Plasma Physics and Controlled Fusion