溅射系数与轰击粒子的能量和入射角的关系。以钨靶为例说明溅射粒子的能谱和平均能量

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, FLUIDS & PLASMAS
P. Yu. Babenko, V. S. Mikhailov, A. P. Shergin, A. N. Zinoviev
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引用次数: 0

摘要

本文概述了描述固体表面离子轰击过程中原子粒子溅射特性的函数依赖关系(公式)。考虑了溅射系数与轰击粒子的能量和入射角的关系。介绍了溅射粒子的能谱和平均能量。以钨靶和氢同位素射弹为例,提出了计算所考虑的数量的公式。这些数据对于使用传输代码估算作为杂质的溅射钨原子进入热等离子体是必要的。当钨杂质浓度高于临界浓度时,就不可能在 ITER 托卡马克反应堆中按计划的能量输出进行受控热核反应。在模拟氢燃料原子与分流器和第一壁材料之间的相互作用导致杂质进入等离子体设施时,溅射系数也发挥着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dependence of Sputtering Coefficient on Energy and Incidence Angle of Bombarding Particles. Energy Spectrum and Average Energy of Sputtered Particles by the Example of a Tungsten Target

An overview of the functional dependences (formulas) for describing the properties of atomic particles sputtered during ion bombardment of the surface of a solid body is presented. The dependence of sputtering coefficients on the energy and angle of incidence of the bombarding particle is considered. The energy spectra and average energies of sputtered particles are presented. Formulas for calculating the quantities under consideration are proposed by the example of a target made of tungsten and hydrogen isotopes as projectiles. These data are necessary to estimate the entry of sputtered tungsten atoms as an impurity into a hot plasma using transport codes. When the tungsten impurity concentration is higher than the critical one, it is impossible to carry out a controlled thermonuclear reaction with the planned energy output in the ITER tokamak reactor. Sputtering coefficients also play an important role in simulating the entry of impurities into plasma facilities as a result of the interaction between hydrogen fuel atoms and the materials of the divertor and the first wall.

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来源期刊
Plasma Physics Reports
Plasma Physics Reports 物理-物理:流体与等离子体
CiteScore
1.90
自引率
36.40%
发文量
104
审稿时长
4-8 weeks
期刊介绍: Plasma Physics Reports is a peer reviewed journal devoted to plasma physics. The journal covers the following topics: high-temperature plasma physics related to the problem of controlled nuclear fusion based on magnetic and inertial confinement; physics of cosmic plasma, including magnetosphere plasma, sun and stellar plasma, etc.; gas discharge plasma and plasma generated by laser and particle beams. The journal also publishes papers on such related topics as plasma electronics, generation of radiation in plasma, and plasma diagnostics. As well as other original communications, the journal publishes topical reviews and conference proceedings.
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