A modal-matching algorithm computes the radiation field and resonant frequencies of a helically moving charge inside a multilayer cylindrical waveguide, with explicit formulas for one- and two-layer walls.
A new approach to solving the radiation field problem of an extended helical undulator
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abstract
A new method is applied to construct an exact solution for the radiation field of a particle moving along an infinite helical trajectory. The solution is obtained in the form of a series expansion in cylindrical multipoles. The obtained solution is compared with the existing approximate solution and, using the derived exact relationships for the Doppler effect, is used to construct integral and angular characteristics of the radiation field. The possibility of a continuous transition from expressions for a helical trajectory of a particle to expressions describing the motion of a particle along a closed circle is shown. Optimization criteria are introduced and the possibility of optimizing the radiation characteristics by several parameters is considered.
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Radiation of a particle performing helical motion in a multilayer cylindrical waveguide
A modal-matching algorithm computes the radiation field and resonant frequencies of a helically moving charge inside a multilayer cylindrical waveguide, with explicit formulas for one- and two-layer walls.