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Chaotic electron trajectories in an electromagnetic wiggler free-electron laser with ion-channel guiding

机译:离子通道引导的电磁摆动自由电子激光器中的混沌电子轨迹

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Chaotic behavior of an electron motion in combined backward propagating electromagnetic wiggler and ion-channel electrostatic fields is studied. The Poinca? surface-of-sections are employed to investigate chaotic behavior of electron motion. It is shown that the electron motion can exhibit chaotic behavior when the ion-channel density is low or medium, while for sufficiently high ion-channel density, the electron motion becomes regular (nonchaotic). Also, the chaotic trajectories decrease when the effects of self-fields of electron beam are taken into account and under Budker condition all trajectories become regular. The above result is in contrast with magnetostatic helical wiggler with axial magnetic field in which chaotic motion is produced by self-fields of electron beam. The chaotic and nonchaotic electron trajectories are confirmed by calculating Liapunov exponents.
机译:研究了后向传播电磁摆动和离子通道静电场联合作用下电子运动的混沌行为。庞卡?截面表面用于研究电子运动的混沌行为。结果表明,当离子通道密度低或中等时,电子运动会表现出混沌行为,而对于足够高的离子通道密度,电子运动将变得规则(非混沌)。而且,当考虑电子束的自电场的影响时,混沌轨迹减小,并且在Budker条件下,所有轨迹都变得规则。上述结果与具有轴向磁场的静磁螺旋摆动器相反,在静磁场螺旋摆动器中,电子束的自磁场产生混沌运动。通过计算Liapunov指数可以确认混沌和非混沌电子轨迹。

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