具有高脉冲功率密度的亚毫秒级铬离子束

IF 0.4 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY
A. V. Gurulev, A. I. Ryabchikov
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引用次数: 0

摘要

本文重点研究了高强度亚毫秒铬离子束的形成与高功率密度。能量达到 70 keV 的离子诱导电子发射会影响空间电荷的中和以及离子束参数的确定精度。研究表明,在高离子能量下,虚拟阳极效应不会出现,而且会形成高脉冲持续时间的离子束。研究发现,在放电电流为 170 A 时,16 个脉冲的平均最大电流密度达到 2.8 A/cm2。在 35 kV 加速电压下,离子束的最大功率密度接近 100 kW/cm2。真空电弧等离子体中离子诱导电子发射的不稳定性使脉冲的功率密度提高了 2 倍以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Submillisecond Chromium Ion Beams with High-Pulse Power Density

The paper focuses on the formation of high-intensity submillisecond chromium ion beams with a high power density. The ion-induced electron emission at the energy reaching 70 keV affects the neutralization of space charge and determination accuracy of the ion beam parameters. It is shown that at high ion energies, the virtual anode effect does not appear, and the formation of ion beams of a high pulse duration occurs. It is found that at 170 A discharge current, the maximum current density averaged over 16 pulses, reaches 2.8 A/cm2. The maximum power density in the ion beam at 35 kV accelerating voltage approaches to 100 kW/cm2. Instability of the ion-induced electron emission from the vacuum arc plasma improves the power density of pulses by more than 2 times.

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来源期刊
Russian Physics Journal
Russian Physics Journal PHYSICS, MULTIDISCIPLINARY-
CiteScore
1.00
自引率
50.00%
发文量
208
审稿时长
3-6 weeks
期刊介绍: Russian Physics Journal covers the broad spectrum of specialized research in applied physics, with emphasis on work with practical applications in solid-state physics, optics, and magnetism. Particularly interesting results are reported in connection with: electroluminescence and crystal phospors; semiconductors; phase transformations in solids; superconductivity; properties of thin films; and magnetomechanical phenomena.
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