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Modernization of the Injector for a Multibeam Proton Accelerator

机译:多束质子加速器喷射器的现代化

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摘要

Within the program for the development of high-current charged-particle accelerators with a high acceleration rate, an injector for a 19-beam proton accelerator with a multibeam ion injection mode is described. The injector contains an ion gun with a duoplasmatron-type H_2 ion source and a multiaperture ion-optical system regulating the inclination of the ion-beam current tubes at the inputs of the corresponding channels of the accelerating structure. The cold-cathode ion source contains a system for transporting plasma from the cathode to its output aperture in magnetic fields of complex configurations, which allows stable pulsed generation of proton beams with a current amplitude of up to 3 A at an operating gas pressure in the discharge chamber of 0.2 Torr and a decrease in the flow of unionized gas emerging from the source to 2 cm~3/h. It is shown that the developed ion source and the ion-optical system make it possible to increase the phase density of the beam current at the inputs of the accelerating-structure channels and to change the divergence angles.
机译:在用于开发具有高加速率的高电流带电粒子加速器的程序中,描述了具有多束离子注入模式的19束质子加速器的注射器。喷射器包含一个带有双等离子体加速器型H_2离子源的离子枪和一个多孔径离子光学系统,该系统在加速结构相应通道的输入处调节离子束电流管的倾斜度。冷阴极离子源包含一个用于在复杂配置的磁场中将等离子体从阴极传输到其输出孔的系统,该系统允许在工作气体压力下以高达3 A的电流幅值稳定脉冲生成质子束。排放室的压力为0.2托,并且从源头出来的工会气体的流量降低到2 cm〜3 / h。结果表明,开发的离子源和离子光学系统可以增加加速结构通道输入处的束流的相密度,并改变发散角。

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