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Simulations of beam-beam interaction in an energy recovery linac

机译:能量回收直线加速器中束流相互作用的仿真

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摘要

Interactions between accelerated beams and reinjected spent beams in an energy recovery linac (ERL) were studied numerically aiming at an enhanced efficiency and a reduced shielding load. With low injector energy, 1 MeV, the orthodox scheme for reinjecting spent beams, on one hand, is found to result in undesirable beam-loading deviations in an ERL owing to velocity variations of the beams. On the other hand, a counter reinjection scheme is found to be effective for suppressing the deviations, but it is also found to result in an appreciable degradation in a fresh beam's properties due to enhanced beam-beam interactions. To realize the advantages of both of these two schemes, a new combined scheme for an ERL-based FEL is proposed. Also the effects of spent beams' properties on fresh beams' emittances are discussed.
机译:数值研究了能量回收直线加速器(ERL)中加速光束与再注入废光束之间的相互作用,旨在提高效率并降低屏蔽负荷。一方面,在低注入能量1 MeV的情况下,发现用于重新注入用过的光束的正统方案会由于光束的速度变化而导致ERL中不希望有的光束加载偏差。另一方面,发现反向注入方案对于抑制偏差是有效的,但是由于增强的束-束相互作用,还发现其导致新鲜束的性能明显下降。为了实现这两种方案的优点,提出了一种新的基于ERL的FEL组合方案。还讨论了废光束特性对新鲜光束发射率的影响。

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