TMCI with Resonator Wakes

A. Burov, T. Zolkin
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Abstract

Transverse mode-coupling instability (TMCI) with a high-frequency resonator wake is examined by the Nested Head-Tail Vlasov solver (NHT), where a Gaussian bunch in a parabolic potential (GP model) is represented by concentric rings in the longitudinal phase space. It is shown that multiple mode couplings and decouplings make impossible an unambiguous definition of the threshold, unless Landau damping is taken into account. To address this problem, instead of a single instability threshold, an interval of thresholds is suggested, bounded by the low and high intensity ones. For the broadband impedance model, the high intensity threshold is shown to follow Zotter's scaling, but smaller by about a factor of two. The same scaling, this time smaller than Zotter's by a factor of four, is found for the ABS model (Air Bag Square well).
带有谐振尾迹的TMCI
利用嵌套头尾Vlasov求解器(NHT)研究了具有高频谐振腔尾迹的横向模耦合不稳定性(TMCI),其中抛物势(GP模型)中的高斯束由纵向相空间中的同心圆表示。结果表明,除非考虑朗道阻尼,否则多模耦合和解耦不可能明确定义阈值。为了解决这一问题,建议采用由低强度和高强度阈值界定的一系列阈值,而不是单一的不稳定阈值。对于宽带阻抗模型,高强度阈值显示遵循Zotter的缩放,但小了大约两倍。同样的缩放,这次比Zotter的四倍小,发现ABS模型(安全气囊方形井)。
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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