重离子束探测氢等离子体中电荷交换过程的作用

IF 4.8 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
I. Tolstikhina, V. P. Shevelko
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引用次数: 0

摘要

研究了重离子束探测氢等离子体时低电荷离子的电荷变化过程。随着束流离子被等离子体电子和质子电离,离子在氢原子和质子上的电荷交换过程也得到了研究。结果表明,束流离子与等离子体质子和氢原子之间的电荷交换在束流等离子体相互作用中起着重要作用,而这一作用很少被考虑到。本文介绍了常用于等离子体诊断的Tl+和Tl2+离子的截面、电离速率和电荷交换过程的新数据。在相对较低和较高的离子束速度vb = 0.2和1.0 a.u.下,分别对氢等离子体温度Te = 1 eV-10 keV和密度Ne = 1012-1014 cm - 3进行了计算。特别注意电子温度的测定,在此温度下氢原子和质子的电荷交换过程是重要的。简要讨论了等离子体电子和质子对束流离子的多重电离作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of charge-exchange processes in probing hydrogen plasma with a heavy ion beam
Charge-changing processes of low-charged ions, used in hydrogen plasma probing by the heavy ion beam probe method, are considered. Along with the ionization of beam ions by plasma electrons and protons, the charge-exchange processes of ions on H atoms and protons are also studied. It is shown that charge exchange of beam ions on plasma protons and H atoms, which is rarely taken into account, plays an important role in beam–plasma interaction. New data on the cross sections and rates of ionization and charge-exchange processes are presented for Tl+ and Tl2+ ions, which are frequently used for plasma diagnostics. Calculations are performed for hydrogen plasma temperatures Te = 1 eV–10 keV and densities Ne = 1012–1014 cm−3 at relatively low and high ion-beam velocities vb = 0.2 and 1.0 a.u., respectively. Special attention is paid to the determination of the electron temperatures at which the charge-exchange processes on H atoms and protons are important. Multiple ionization of beam ions by plasma electrons and protons is briefly discussed.
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来源期刊
Matter and Radiation at Extremes
Matter and Radiation at Extremes Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
8.60
自引率
9.80%
发文量
160
审稿时长
15 weeks
期刊介绍: Matter and Radiation at Extremes (MRE), is committed to the publication of original and impactful research and review papers that address extreme states of matter and radiation, and the associated science and technology that are employed to produce and diagnose these conditions in the laboratory. Drivers, targets and diagnostics are included along with related numerical simulation and computational methods. It aims to provide a peer-reviewed platform for the international physics community and promote worldwide dissemination of the latest and impactful research in related fields.
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