Diffusion mechanism of particle beams in the presence of phase modulation in double RF systems

M. Ball, J. Budnick, C. Chu, K. Fung, B. Hamilton, D. Jeon, X. Kang, L. L. Kiang, S. Lee, A. Pei, T. Sloan, K. Ng
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Abstract

The particle diffusion mechanism due to phase modulation on one of the RF cavities in a double RF system is studied. We find that the Einstein relation is satisfied if there is a global chaos in the phase space. On the other hand, the existence of dominant parametric resonances forces the particles streaming along the separatrix, which may result in an anomalous diffusion process. The particle tracking simulations based on the Hamiltonian for the double RF system is employed to reveal the essential diffusion mechanism. Also for the first time, a coherent octupole mode has been observed in the bunch beam excitation. The phase space evolution of the octupole mode is displayed.
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双射频系统中存在相位调制时粒子束的扩散机制
研究了双射频系统中粒子在其中一个射频腔内的相位调制扩散机理。我们发现,当相空间中存在全局混沌时,满足爱因斯坦关系。另一方面,主导参数共振的存在迫使粒子沿分离矩阵流动,这可能导致反常的扩散过程。采用基于哈密顿量的粒子跟踪模拟,揭示了双射频系统的基本扩散机制。同时也首次在束束激发中观察到相干八极子模式。显示了八极子模式的相空间演化。
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