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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Electron-induced secondary electron emission coefficient of lithium, tungsten and stainless steel surfaces exposed to low-pressure plasmas
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Electron-induced secondary electron emission coefficient of lithium, tungsten and stainless steel surfaces exposed to low-pressure plasmas

机译:暴露于低压等离子体的锂,钨和不锈钢表面的电子诱导的二次电子发射系数

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摘要

The secondary electron emission (SEE) coefficient by electron impact of Li, Wand stainless steel (SS) surfaces exposed to a glow discharge is evaluated and analyzed in the energy range of E_e < 200 eV. While the values of the SEE coefficient for SS and W show a small increase with respect to their vacuum value, an enhancement of this parameter up to a factor of 6 has been deduced for clean Li surfaces. Experiments with different plasma gas discharges (He, Ar and H_2) are undertaken in order to address the possible mechanisms related to such enhancement. No major effect of the bombarding ion mass or incident electron flux is observed. The implications of these findings on the use of Li as a plasma-facing component in fusion devices are addressed.
机译:在E_e <200 eV的能量范围内,评估和分析了暴露于辉光放电的Li,W和不锈钢(SS)表面通过电子撞击产生的二次电子发射(SEE)系数。尽管SS和W的SEE系数值相对于它们的真空值显示出很小的增加,但是对于干净的Li表面,该参数的提高幅度高达6倍。为了解决与这种增强有关的可能机制,进行了不同等离子体气体放电(He,Ar和H_2)的实验。没有观察到轰击离子质量或入射电子通量的主要影响。这些发现对使用锂作为聚变设备中面向等离子体的组件的意义产生了影响。

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