Wave breaking and particle jets in inhomogeneous beams

F. Rizzato, R. Pakter, Y. Levin, R. Nunes
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Abstract

We analyze the dynamics of inhomogeneous, magnetically focused high-intensity beams of charged particles. While for homogeneous beams the whole system oscillates with a single frequency, any inhomogeneity leads to propagating transverse density waves which eventually result in a singular density build up, causing wave breaking and jet formation. The theory presented in this paper allows to analytically calculate the time at which the wave breaking takes place. It also gives a good estimate of the time necessary for the beam to relax into the final stationary state consisting of a cold core surrounded by a halo of highly energetic particles.
非均匀光束中的破波和粒子射流
我们分析了非均匀、磁聚焦的高强度带电粒子束的动力学。而对于均匀光束,整个系统以单一频率振荡,任何不均匀性都会导致横向密度波的传播,最终导致奇异密度的积累,从而导致波破碎和射流的形成。本文提出的理论可以解析地计算出波浪破碎发生的时间。它还很好地估计了光束松弛到最终定态所需的时间,定态是由高能粒子晕包围的冷核组成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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