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The positive space charge lens for focusing and manipulating high-current beams of negatively charged particles (review)

机译:用于聚焦和操纵带负电粒子的高电流光束的正空间电荷透镜(综述)

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We describe a new approach for creation of effective axially symmetric plasma tools for focusing and manipulating high-current negatively charged particles beams, electrons and negative ions. This approach is based on the fundamental plasma optical concept of magnetic and electrostatic insulation of electrons, and non-magnetized positive ions providing controlled uncompensated positive space charge cloud formation. The recent advances in creation of negative ion sources lead to the problem of elaboration and creation of focusing tools that are capable of manipulating high-current negative ion beams. We present results of experimental investigations of the positive space charge electrostatic plasma lens based on the idea of electron electrostatic insulation first proposed for these goals. Also, we describe novel experimental, theoretical and computer simulation results of the application of electron magnetic insulation concept for generating the stable cloud of positive space charge by focusing the converging flow of heavy ions produced by circular accelerator with closed electron drift onto the axis.
机译:我们描述了一种创建有效的轴对称等离子体工具的新方法,该工具用于聚焦和操纵高电流带负电的粒子束,电子和负离子。此方法基于电子的磁和静电绝缘以及提供受控的未补偿正空间电荷云形成的非磁化正离子的基本等离子光学概念。在产生负离子源方面的最新进展导致了精细化和产生能够操纵大电流负离子束的聚焦工具的问题。我们介绍了基于最初针对这些目的提出的电子静电绝缘的思想对正空间电荷静电等离子透镜进行实验研究的结果。此外,我们还介绍了将电磁绝缘概念应用于通过将闭合电子漂移的圆形加速器产生的重离子的会聚流聚焦在轴上来生成稳定的正空间电荷云的应用的新颖的实验,理论和计算机模拟结果。

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