首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Cool-stacking injection and damping of a transverse ion-beam instability at the HIMAC synchrotron
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Cool-stacking injection and damping of a transverse ion-beam instability at the HIMAC synchrotron

机译:HIMAC同步加速器的冷堆注入和横向离子束不稳定性的阻尼

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High-density ion beams obtained by electron cooling will be used for medical and other applications at HIMAC. Cool-stacking injection was carried out with Ar~(18+) ions at 6 MeV/u to increase the intensity to a limit, which was determined by instabilities and by the ion lifetime. The maximum ion stack intensity was 2 emA, above which fast-ion losses occurred simultaneously with vertical coherent oscillations. The instability depends on the working point, the ion stack density and secondary ions trapped in the cooler. The instability was damped by reducing the stacked ion density with transverse RF-excitation, and/or by clearing the secondary particles.
机译:通过电子冷却获得的高密度离子束将用于HIMAC的医疗和其他应用。用Ar〜(18+)离子以6 MeV / u进行冷堆积注入,以将强度增加到极限,该极限由不稳定性和离子寿命决定。最大离子堆叠强度为2 emA,在此之上,快速离子损失与垂直相干振荡同时发生。不稳定性取决于工作点,离子堆密度和冷却器中捕获的次级离子。通过横向RF激励降低堆叠离子密度和/或清除次级粒子,可以减轻不稳定性。

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