A high-current ion source based on a hollow-cathode glow discharge with e-beam injection

E. Oks, A. Vizir, G. Yushkov
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引用次数: 1

Abstract

The hollow-cathode glow discharge is harnessed for generation of gas-discharge plasma and production of charged-particle beams at operating pressures of 10/sup -3/-10/sup -1/ Torr. However, the use of this type of discharge as a plasma emitter in wide-aperture gaseous ion sources calls for its operation at a pressure of 10/sup -4/ Torr or less. External injection of extra electrons into the cathode cavity provides a reduction of its lowest limiting operating pressure to below 10/sup -4/ Torr. At this pressure the electric strength of the acceleration gap is sufficient to extract an ion beam of energy several tens of KeV, and the scattering and resonance charge exchange of accelerated ions at residual gas atoms affect the parameters of the beam in this transportation toward a target only slightly. The paper is devoted to an investigation of the mass-charge composition of an ion beam extracted from the plasma of this type of high-current discharge.
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基于电子束注入空心阴极辉光放电的大电流离子源
在10/sup -3/-10/sup -1/ Torr的工作压力下,利用空心阴极辉光放电产生气体放电等离子体和带电粒子束。然而,在大孔径气体离子源中使用这种类型的放电作为等离子体发射器要求其在10/sup -4/ Torr或更低的压力下运行。在阴极腔中注入额外的电子可以将其最低极限操作压力降低到10/sup -4/ Torr以下。在此压力下,加速间隙的电强度足以提取能量为几十KeV的离子束,加速离子在残余气体原子处的散射和共振电荷交换对离子束向目标输运的参数影响很小。本文研究了从这种大电流放电的等离子体中提取的离子束的质量-电荷组成。
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