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Anisotropic electron velocity distribution in an ECR helium plasma as determined from polarization of emission lines

A Iwamae, T Sato, Y Horimoto, K Inoue, T Fujimoto, M Uchida, T Maekawa2005年Plasma Physics and Controlled FusionIF 2.2出版社

A helium plasma is produced by electron–cyclotron resonance heating in a cusp-configuration magnetic field. Several neutral helium lines are found polarized in the direction perpendicular to the magnetic field; the maximum polarization degree exceeds 10%. The polarization degree and intensity of the emission lines yield, respectively, the alignment and population of the upper levels. The population-alignment collisional-radiative model is developed, and the experimental result is interpreted in terms of an anisotropic electron velocity distribution; it is of a Saturn-type with the central thermal component of 14 eV and the 'ring' component displaced by 9.2 eV from the central component. The relative number of 'ring' electrons is 40%.

日本語訳

ヘリウムプラズマは、カスプ配位磁場中での電子サイクロトロン共鳴加熱によって生成される。複数のヘリウム中性輝線が、磁場に垂直な方向に偏光していることが見出され、偏光度の最大値は10%を超える。発光線の偏光度と強度は、それぞれ上準位の配向と分布数を与える。衝突放射モデルが構築され、実験結果は異方性電子速度分布の観点から解釈される。その分布は、14 eVの熱的成分と、中心成分から9.2 eVずれた「リング」成分からなる土星型である。「リング」電子の相対数は40%である。

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HeliumElectron cyclotron resonanceHelium plasma
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