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CHAOTIC ELECTRON TRAJECTORIES IN A CIRCULAR FREE ELECTRON LASER
作者姓名:Yin  Yuanzhao  Yin  Hejun
作者单位:Institute of Electronics,Academia Sinica,Beijing 100080
基金项目:Supported by the National Natural Science Foundation of China
摘    要:The motion of a relativistic electron is analyzed in the field configuration consisting of a circular wiggler magnetic field, an axial magnetic field, and the equilibrium self-electric and self-magnetic fields produced by the non-neutral electron ring. By generating Poincare surface-of-section maps, it is shown that when the equilibrium self-fields is strong enough, the electron motions become chaotic. Although the realistic circular wiggler magnetic field destroys the inte-grability of the electron motion as the equilibrium self-fields do, the role the latter plays to make the motions become chaotic is stronger than the former does. In addition, the axial magnetic field can restrain the occurrence of the chaoticity.


Chaotic electron trajectories in a circular free electron laser
Yin Yuanzhao Yin Hejun.CHAOTIC ELECTRON TRAJECTORIES IN A CIRCULAR FREE ELECTRON LASER[J].Journal of Electronics,1996,13(2):164-169.
Authors:Yin Yuanzhao  Yin Hejun
Affiliation:(1) Institute of Electronics, Academia Scienca, 100080 Beijing
Abstract:The motion of a relativistic electron is analyzed in the field configuration consisting of a circular wiggler magnetic field, an axial magnetic field, and the equilibrium self-electric and self-magnetic fields produced by the non-neutral electron ring. By generating Poincare surface-of-section maps, it is shown that when the equilibrium self-fields is strong enough, the electron motions become chaotic. Although the realistic circular wiggler magnetic field destroys the inte-grability of the electron motion as the equilibrium self-fields do, the role the latter plays to make the motions become chaotic is stronger than the former does. In addition, the axial magnetic field can restrain the occurrence of the chaoticity.
Keywords:Circular free electron laser  Self-fields  Chaos
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