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Energy spectra from electromagnetic fields generated by ultra-relativistic charged bunches in a perfectly conducting cylindrical beam pipe

机译:完美传导圆柱形束管中超相对论性带电束产生的电磁场的能谱

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摘要

The spectrum of electromagnetic fields satisfying perfectly conducting boundary conditions in a segment of a straight beam pipe with a circular cross-section is discussed as a function of various source models. These include charged bunches that move along the axis of the pipe with constant speed for which an exact solution to the initial-boundary value problem for Maxwell's equations in the beam pipe is derived. In the ultra-relativistic limit all longitudinal components of the fields tend to zero and the spectral content of the transverse fields and average total electromagnetic energy crossing any section of the beam pipe are directly related to certain properties of the ultra-relativistic source. It is shown that for axially symmetric ultra-relativistic bunches interference effects occur analogous to those that occur due to coherent synchrotron radiation in cyclic machines despite the fact that in this limit the source is not accelerating. The results offer an analytic description of the fields showing how enhanced spectral behaviour depends on the geometry of the source, its location in the beam pipe and the details of the stochastic distribution of the source structure. The results are illustrated for different situations associated with the motion of on-axis ultra-relativistic bunches. The field energy spectra associated with a source containing N identically charged ultra-relativistic pulses, each with individual longitudinal Gaussian profiles distributed according to a uniform probability distribution with compact support, is compared with that generated by charged bunches containing a distribution with 2n + 1 peaks in a region with compact support (modelling micro-bunches). These results are of relevance for the experimental determination of properties of the longitudinal charge distribution of short relativistic electron bunches with micro-structure in straight segments of a beam pipe, from observation of the associated electromagnetic energy spectra.
机译:讨论了在具有圆形横截面的直管段中完全满足边界条件的电磁场频谱,它是各种源模型的函数。这些包括带电束,它们以恒定的速度沿管道的轴线移动,由此得出束管中麦克斯韦方程组的初边值问题的精确解。在超相对论极限中,场的所有纵向分量趋向于零,并且横向场的光谱含量和穿过束管的任何截面的平均总电磁能都与超相对论源的某些特性直接相关。结果表明,对于轴对称的超相对论束,尽管在这个极限内源不加速,但发生的干扰效应类似于由于循环电机中相干同步加速器辐射而产生的干扰效应。结果提供了对场的分析描述,显示了增强的光谱行为如何取决于源的几何形状,其在束管中的位置以及源结构的随机分布的详细信息。结果说明了与轴超相对论束运动相关的不同情况。将与包含N个带相同电荷的超相对论脉冲源的场能谱与由具有紧凑的支持的均匀概率分布按照均匀概率分布分布的每个纵向高斯分布的谱带与包含2n +1个峰的分布的带电束所产生的场能谱进行比较在具有紧凑支撑的区域(微束建模)。这些结果与通过观察相关的电磁能谱,通过实验确定束管直段中具有微观结构的相对论性短电子束的纵向电荷分布的性质有关。

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