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Final cooling for a high-energy high-luminosity lepton collider

机译:最终冷却,用于高能高亮度Lepton Collider

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摘要

A high-energy muon collider requires a "final cooling" system that reduces transverse emittance by a factor of ~ 10, while allowing the longitudinal emittance to increase. The baseline approach has low-energy transverse cooling within high-field solenoids, with strong longitudinal heating. This approach and its recent simulation are discussed. Alternative approaches, which more explicitly include emittance exchange are also presented. Round-to-flat beam transform, transverse slicing, and longitudinal bunch coalescence are possible components of an alternative approach. Wedge-based emittance exchange could provide much of the required transverse cooling with longitudinal heating. Li-lens and quadrupole focusing systems could also provide much of the required final cooling.
机译:高能量的MUON对撞机需要一个“最终冷却”系统,该系统将横向发射率降低约10倍,同时允许纵向发射量增加。 基线方法在高场螺线管内具有低能的横向冷却,并具有强烈的纵向加热。 讨论了这种方法及其最近的模拟。 还提出了更明确地包括发射交换的替代方法。 圆头光束变换,横向切片和纵向束合并是替代方法的可能组成部分。 基于楔形的发射交换可以通过纵向加热提供许多所需的横向冷却。 Li-Lens和四极聚焦系统也可以提供许多必需的最终冷却。

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