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Prospects for all-optical ultrafast muon acceleration

机译:全光学超快μ子加速器的前景

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摘要

A scheme for fast, compact and controllable acceleration of heavy particles in vacuum has been recently proposed (Peano F et al 2008 New J. Phys. 10 033028), wherein two counterpropagating laser beams with variable frequencies drive a beat-wave structure with variable phase velocity, leading to particle trapping and acceleration. The technique allows for fine control over the energy distribution and the total charge of the accelerated beam to be obtained via tuning of the frequency variation. Here, the theoretical bases of the acceleration scheme are described, and the possibility of applications to ultrafast muon acceleration and to the prompt extraction of cold-muon beams is discussed.
机译:最近已经提出了用于在真空中快速,紧凑和可控制地加速重粒子的方案(Peano F等人,2008 New J. Phys。10 033028),其中,两个具有可变频率的反向传播的激光束驱动具有可变相位的拍波结构速度,导致粒子捕获和加速。该技术允许对能量分布进行精确控制,并通过调谐频率变化来获得加速光束的总电荷。在这里,描述了加速方案的理论基础,并讨论了应用于超快介子加速和快速提取冷介子束的可能性。

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