首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Longitudinal instability in high-intensity synchrotron including the perturbation of synchronous phase
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Longitudinal instability in high-intensity synchrotron including the perturbation of synchronous phase

机译:高强度同步加速器的纵向不稳定性,包括同步相位的扰动

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摘要

In a high-intensity synchrotron, both amplitude and frequency of radio frequency (RF) acceleration voltage are modulated. In that case, the particle on a synchronous phase of the unperturbed RF voltage is not given the equilibrium energy that is related to a magnetic guide field. Including this difference in the given energy from the equilibrium one, we suggest that the equilibrium particle can revolve stably on the closed orbit, which is different from a nominal orbit without a modulation of RF voltage. And then, we formulate a new equation of motion and examine the Robinson instability. Here, the effect of beam intensity modulation is also included. This proposed method results in the fact that the stability criterion is significantly different from the conventional one, and requires optimum parameters of an RF system to ensure stability.
机译:在高强度同步加速器中,射频(RF)加速电压的幅度和频率均被调制。在那种情况下,未扰动的RF电压的同步相位上的粒子不会获得与磁导场有关的平衡能量。包括来自平衡点的给定能量的这种差异,我们建议平衡粒子可以在闭合轨道上稳定旋转,这与不调节射频电压的标称轨道不同。然后,我们制定了一个新的运动方程,并研究了鲁宾逊不稳定性。这里,还包括光束强度调制的效果。该提出的方法导致以下事实:稳定性标准与常规标准显着不同,并且需要RF系统的最佳参数以确保稳定性。

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