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Equilibrium electrons in free-electron lasers with a 3D helical wiggler and a guide magnetic field: Nonlinear simulations

机译:具有3D螺旋摆动器和引导磁场的自由电子激光器中的平衡电子:非线性模拟

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Nonlinear simulations are devoted to the comparative study of the equilibrium electrons' motion and stability in the combination of a three-dimensional helical wiggler and a positive or reversed guide magnetic field, where effects of the self-field, off-axis guiding center and adiabatic magnetic field are included. It is shown that a reversed guide magnetic field configuration brings the electron motion much smaller Larmor radius and transverse displacement span than a positive guide magnetic field does, and consequently, provides better transportation quality of the electron beam. Although the electron motion far from the resonance and antiresonance is stable in both the positive and the reversed guide magnetic field configurations, fluctuation induced by a reversed guide magnetic field is smaller than that by a positive guide magnetic field, especially in the adiabatic region of the wiggler. In a certain parameters domain, the self-field of the electron beam is advantageous to confine the electrons' motion at antiresonance.
机译:非线性模拟致力于在三维螺旋摆动器和正向或反向导向磁场的组合下对平衡电子的运动和稳定性进行比较研究,其中自磁场,离轴导向中心和绝热的影响包括磁场。结果表明,与正向导磁场相反,向导磁场的反向配置使电子运动的拉莫尔半径和横向位移跨度小得多,从而提供了更好的电子束传输质量。尽管在正向和反向引导磁场配置中远离共振和反共振的电子运动都是稳定的,但是反向引导磁场引起的波动要小于正向引导磁场,特别是在绝热区域中。摇摆人。在某些参数域中,电子束的自电场有利于将电子的运动限制在反共振下。

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