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Magnetic matching of beam optics between quasilaminar and phase-mixed states

机译:准光学与相混合态之间光束光学的磁匹配

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Electron beams propagating in the ion focused regime (Bennett pinch) are known as phase-mixed electron beams. Such beams are of interest for various sources of coherent electromagnetic radiation (pasotrons, ion-channel lasers, ion-channel guided free-electron lasers). Typically, the transition of a beam from a quasilaminar state near the gun to a phase-mixed equilibrium state known as the Bennett pinch is accompanied by the appearance of betatron oscillations. In pasotrons these oscillations play a negative role because they often result in certain beam losses due to the interception of beam electrons oscillating with large amplitudes by the chamber walls. The betatron oscillations and the beam losses associated with them can be monitored by using a weak local external magnetic field (magnetic lens) in the transition region. This paper is devoted to the analysis of the beam dynamics in the transition region and to the study of the effect of the magnetic lens. With the use of the concept of the free energy of the ensemble of charged particles, the relation between the beam radius in the Bennett pinch and the radii at the entrance and exit from a magnetic lens is derived. The results obtained show that, by using a properly designed and positioned magnetic lens in pasotrons, a halo in the phase-mixed beam can be greatly reduced and the beam losses can be practically eliminated. (C) 2003 American Institute of Physics. [References: 32]
机译:以离子聚焦方式传播的电子束(Bennett夹点)被称为相混合电子束。这样的光束对于相干电磁辐射的各种来源(正电子,离子通道激光器,离子通道引导的自由电子激光器)很重要。通常,光束从枪附近的准准纳尔状态到称为贝内特捏合的相混合平衡状态的过渡伴随着电子感应加速器振荡的出现。在pastrons中,这些振荡起负面作用,因为由于室壁以大振幅振荡的电子束被拦截,它们通常会导致某些电子束损失。可以通过在过渡区域中使用弱的本地外部磁场(磁透镜)来监控电子感应加速器的振荡以及与之相关的束损耗。本文致力于分析过渡区域中的电子束动力学,并研究磁透镜的效果。利用带电粒子整体的自由能的概念,推导了贝内特夹点中的束半径与磁透镜的入口和出口处的半径之间的关系。所获得的结果表明,通过在正电子中使用适当设计和定位的磁透镜,可以大大减少相混合束中的光晕,并且可以实际消除束损耗。 (C)2003美国物理研究所。 [参考:32]

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