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Exact Space-Charge Field Solutions for Cylindrically Symmetric Beam Currents in a Circular Conductor Pipe

机译:圆形导体管中圆柱对称束流的精确空间电荷场解

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We derive an exact formalism for calculating the space-charge fields of an electron beam inside of a perfectly conducting cylindrical pipe. The formalism utilizes a series expansion of the beam-charge and current densities in Bessel functions in conjunction with a time-dependent Green's function method to compute the exact space-charge fields due to the beam with the appropriate conductor boundary conditions. The formalism can be utilized for theoretical and numerical studies of high-space-charge beams, such as those found in high-power microwave sources. As a numerical example, we demonstrate how this formalism can be implemented numerically to compute the space-charge fields for a bunched beam which is undergoing radial oscillations.
机译:我们得出一个精确的形式主义,用于计算一个完美导电的圆柱形管道内部的电子束的空间电荷场。形式主义利用贝塞尔函数中束流电荷和电流密度的一系列展开,并结合时变格林函数方法来计算由于束流具有适当导体边界条件而产生的精确空间电荷场。形式主义可用于高空间电荷束的理论和数值研究,例如在高功率微波源中发现的那些。作为一个数值示例,我们演示了如何用数字形式实现这种形式主义,以计算束状束正经历径向振动的空间电荷场。

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