首页> 外文期刊>Plasma Science, IEEE Transactions on >Enhancement of Gain and Modified Electron Beam Trajectories Using a Relativistic Electron Beam With an Elliptical Cross Section in Free-Electron Laser With a Helical Wiggler and Ion-Channel Guiding
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Enhancement of Gain and Modified Electron Beam Trajectories Using a Relativistic Electron Beam With an Elliptical Cross Section in Free-Electron Laser With a Helical Wiggler and Ion-Channel Guiding

机译:利用具有椭圆形横截面的相对论电子束提高增益和改进的电子束轨迹,其自由电子激光器,具有螺旋Wigler和离子通道引导

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This article investigates the effects of ion-channel guiding, axial magnetic fields, helical wiggler magnetic fields (HWMFs), and self-fields on trajectories of the elliptical relativistic electron beam. Two equations for the average axial velocity and the function $Phi $ are calculated for an electron in the considered fields by solving the motion equation. In the meantime, the effects of elliptical cross section demotions and elliptical electron beam density are also studied. The results are compared in the limit that the elliptical electron beam is converted to a circular electron beam, which have also been graphically presented. It is shown that in the considered conditions, in the case of the elliptical beam, and for spatial cases, there are three types of trajectories. This result is different from the case circular beam because in the case circular beam, there are two types of trajectories. It means that in the case of the elliptical cross section, there are two resonance frequencies of the orbits. Moreover, the resonant frequency of the transverse velocity in the circular beam case is within two resonant frequencies in the elliptical beam case. Furthermore, it has been indicated that for special cases, with increasing $ar {omega }_{p} $ , the resonance frequencies of transverse velocity tend toward higher values of $ar {omega }_{i} $ . Finally, the conditions of stability of electron orbits in the elliptical electron beam are investigated by considering HWMF. Furthermore, a detailed analysis of the gain equation in an FEL with elliptical electron beam is presented. The obtained gain for an FEL together with a relativistic electron beam with elliptical cross section is compared to the maximum gain for an FEL together with a relativistic electron beam with circular cross section. It is shown that with increasing the ratio of the semimajor to semiminor axes of the beam cross section, the ratio of the gain of the elliptical electron beam increases compared to when a circular electron beam is used for the group I orbits, while for group II orbits the gain decreased, but in special conditions for group II orbits the gain increased. We investigated a study more precisely on the stability of electron orbits of this free-electron laser in the Appendix.
机译:本文研究了离子通道引导,轴向磁场,螺旋Wiggler磁场(HWMF)和自场在椭圆形相对论电子束的轨迹上的影响。平均轴向速度和功能的两个方程<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ phi $ 通过求解运动方程来计算所考虑的场中的电子。同时,还研究了椭圆形横截面降级和椭圆形电子束密度的影响。将结果与椭圆形电子束转换成圆形电子束的极限进行比较,这也被图形地呈现。结果表明,在所考虑的条件下,在椭圆梁和空间壳体的情况下,存在三种类型的轨迹。该结果与壳体圆形光束不同,因为在圆形光束中,存在两种类型的轨迹。这意味着在椭圆形横截面的情况下,轨道的两个共振频率。此外,圆形梁壳体中的横向速度的谐振频率在椭圆梁壳体中的两个谐振频率范围内。此外,已经表明,对于特殊情况而言,随着特殊情况而增加<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ Bar { Omega} _ {P} $ ,横向速度的共振频率倾向于更高的值<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ Bar { Omega} _ {i} $ 。最后,通过考虑HWMF来研究椭圆形电子束中电子轨道的稳定性条件。此外,介绍了具有椭圆形电子束的FEC中增益方程的详细分析。与具有椭圆形横截面的相对论电子束一起的获得的增益与具有圆形横截面的相对论电子束的最大增益进行比较。结果表明,随着半导体到光束截面的半轴轴的比率,与圆形电子束用于I轨道的圆形电子束时,椭圆形电子束的增益的比率增加,而II族轨道增益下降,但在II组的特殊条件下,增益增加。我们更精确地研究了本空心激光器在附录中的电子轨道的稳定性。

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