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Resistive-Wall Impedance of an Infinitely long Multi-Layer Cylindrical Beam Pipe

机译:无限长多层圆柱束管的电阻壁阻抗

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摘要

The resistive-wall impedance of cylindrical vacuum chambers was first calculated more than forty years ago under some approximations. Since then many papers have been published to extend its range of validity. In the last few years, the interest in this subject has again been revived for the LHC graphite collimators, for which a new physical regime is predicted. The first unstable betatron line in the LHC is at 8 kHz, where the skin depth for graphite is 1.8 cm, which is smaller than the collimator thickness of 2.5 cm. Hence one could think that the resistive thick-wall formula would be about right. It is found that it is not, and that the resistive impedance is about two orders of magnitude lower at this frequency, which is explained by the fact that the skin depth is much larger than the beam pipe radius. Starting from the Maxwell equations and using field matching, a consistent derivation of both longitudinal and transverse resistivewall impedances of an infinitely long cylindrical beam pipe is presented in this paper. The results, which should be valid for any number of layers, beam velocity, frequency, conductivity, permittivity and permeability, have been compared to previous ones.
机译:圆柱形真空室的电阻壁阻抗是在四十多年前首先通过一些近似方法计算得出的。从那时起,已经发表了许多论文以扩展其有效范围。在过去的几年中,LHC石墨准直仪再次引起了人们对这一主题的兴趣,为此人们预言了一种新的物理方法。大型强子对撞机中的第一个不稳定的电子感应加速器线为8 kHz,其中石墨的趋肤深度为1.8 cm,小于准直仪的2.5 cm厚度。因此,人们可以认为电阻厚壁公式将是正确的。发现不是这样,并且在该频率下电阻抗大约低两个数量级,这可以通过趋肤深度远大于束管半径的事实来解释。从麦克斯韦方程开始,并使用场匹配,提出了无限长圆柱束管的纵向和横向电阻壁阻抗的一致推导。该结果对于任何数量的层,射束速度,频率,电导率,介电常数和磁导率都应该有效,已与以前的结果进行了比较。

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