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Mode-selective amplification in a waveguide free electron laser with a two-sectioned wiggler

机译:具有两段摆动的波导自由电子激光器中的模式选择放大

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One important issue in waveguide free electron lasers (FELs) involves an interaction of the electron beam with one waveguide mode at two different resonant frequencies. Since the low-frequency mode often has a higher pain, the usually preferred high-frequency mode is suppressed as a result of mode competition. In this paper, possible control of this mode competition is considered using a nonstandard wiggler magnet consisting of two cascaded wiggler sections with different periods and field strengths. It is demonstrated that with an appropriate differentiation between the two wiggler sections the high-frequency mode may be amplified preferentially. This mode-selective amplification may be used to suppress the low-frequency mode. A small signal gain formulation is developed for a waveguide FEL with such a two-sectioned wiggler arrangement and numerical examples are used to demonstrate its applicability to mode control in waveguide FELs. Effects of wiggler field errors and electron energy spread are also considered. It is shown that the requirement for wiggler field errors and electron energy spread in the two-sectioned wiggler arrangement is similar to that in the usual straight wiggler configuration.
机译:波导自由电子激光器(FEL)中的一个重要问题涉及电子束与一个波导模式在两个不同的谐振频率下的相互作用。由于低频模式通常具有较高的痛苦,因此由于模式竞争而抑制了通常优选的高频模式。在本文中,考虑使用由两个具有不同周期和场强的级联摆动部分组成的非标准摆动状态磁体来控制这种模式竞争。已经证明,通过适当地区分两个摆动部分,可以优先放大高频模式。该模式选择放大可以用于抑制低频模式。针对具有这种两段式摆动装置的波导FEL,开发了一种小信号增益公式,并使用数值示例来说明其在波导FEL中进行模式控制的适用性。还考虑了摆动电场误差和电子能量扩散的影响。结果表明,两段式摆动装置的摆动场误差和电子能量散布的要求与通常的直线摆动装置相似。

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