Implications of beam filling patterns on the design of recirculating energy recovery linacs

S. Setiniyaz, R. Apsimon, P. Williams
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引用次数: 1

Abstract

Recirculating energy recovery linacs are a promising technology for delivering high power particle beams ($\sim$GW) while only requiring low power ($\sim$kW) RF sources. This is achieved by decelerating the used bunches and using the energy they deposit in the accelerating structures to accelerate new bunches. We present studies of the impact of the bunch packet filling pattern on the performance of the accelerating RF system. We perform RF beam loading simulations under various noise levels and beam loading phases with different injection schemes. We also present a mathematical description of the RF system during the beam loading, which can identify optimal beam filling patterns under different conditions. The results of these studies have major implications for design constraints for future energy recovery linacs, by providing a quantitative metric for different machine designs and topologies.
梁填充型式对循环能量回收直线设计的影响
循环能量回收直线加速器是一种很有前途的技术,它可以提供高功率粒子束($ $ sim$GW),同时只需要低功率($ $ sim$kW)射频源。这是通过减速使用的束,并利用它们在加速结构中沉积的能量来加速新的束来实现的。本文研究了束包填充模式对加速射频系统性能的影响。我们用不同的注入方案在不同的噪声水平和波束加载阶段进行了射频波束加载模拟。我们还提出了射频系统在波束加载过程中的数学描述,可以确定不同条件下的最佳波束填充模式。这些研究的结果通过为不同的机器设计和拓扑提供定量度量,对未来能量回收直线的设计约束具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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