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Slow cyclotron instability due to surface modulation of an annular beam

机译:由于环形光束的表面调制,回旋加速器不稳定

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摘要

The Cherenkov instability used in slow-wave devices has been well studied in the literature. However, in previous analyses, the beam motion is restricted to the longitudinal direction assuming an infinitely strong magnetic field. For the finite strength magnetic field, the transverse beam perturbation cannot be ignored and leads to the slow cyclotron instability. Recently, a new version of self-consistent field theory considering three-dimensional perturbation has been developed based on a solid beam, in which the effect of the transverse perturbation appears as a surface charge at a fixed boundary. In the case of a thin annular beam, the boundary is modulated and is essentially different from the solid beam case. We propose a self-consistent field theory considering the moving modified boundary surface. The slow cyclotron instability due to the modulation of an infinitesimally thin annular electron beam is presented.
机译:在文献中已经对慢波装置中使用的切伦科夫不稳定性进行了充分的研究。然而,在先前的分析中,假设无限强的磁场,束流被限制在纵向方向上。对于有限强度的磁场,不能忽略横向电子束的扰动,并导致回旋加速器的不稳定。近来,已经基于固体束开发了一种新版本的考虑三维扰动的自洽场理论,其中,横向扰动的影响表现为在固定边界处的表面电荷。在薄的环形光束的情况下,边界被调制并且与实心光束的情况实质上不同。考虑到移动的修正边界面,我们提出了一个自洽场理论。提出了由于无限薄的环形电子束的调制而引起的缓慢的回旋加速器不稳定性。

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