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首页> 外文期刊>Russian physics journal >Regularities of Plasma-Immersion Formation of Long-Pulse High-Intensity Titanium Ion Beams
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Regularities of Plasma-Immersion Formation of Long-Pulse High-Intensity Titanium Ion Beams

机译:长脉冲高强度钛离子束等离子体浸没形成的规律

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The results of experimental investigations on plasma-immersion formation of ballistically focused beams of low-energy titanium ions with the pulse duration up to 30 s are presented. The processes of neutralization of the space charge of high-intensity beams upon increasing the ion-current density by a few orders of magnitude during their focusing are addressed. The conditions of preliminary injection of the metal plasma, its parameters, the formation of the beam plasma during residual-gas ionization and secondary and thermionic emissions are shown to be of critical importance for an effective transport of these beams in the equi-potential drift space. It is demonstrated that the use of a disc electrode, preventing the macroparticles from penetrating the region of the ballistic beam focusing, increases the efficiency of long-pulse titanium ion beam transport and simultaneously reduces the probability of instability development.
机译:提出了对脉冲持续时间至30秒的脉冲持续时间的球体聚焦光束的等离子体聚焦光束的实验研究结果。 解决了在其聚焦期间在增加离子电流密度增加离子电流密度时的高强度梁的空间电荷的过程。 初步注入金属等离子体的条件,其参数,在残留气体电离和次级和热离子排放期间形成梁等离子体的形成具有重要的重要性,对于这些梁在平等电位漂移空间中的有效运输 。 证明使用盘电极,防止大颗粒穿透弹性光束聚焦的区域,增加了长脉冲钛离子束传输的效率,并同时降低了不稳定发育的概率。

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