Lattice design and expected performance of the Muon Ionization Cooling Experiment demonstration of ionization cooling

Lattice design and expected performance of the Muon Ionization Cooling Experiment demonstration of ionization cooling
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μ子电离冷却的晶格设计和预期性能 电离冷却实验演示

DOI:
10.1103/physrevaccelbeams.20.063501
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发表时间:
2017
影响因子:
1.7
通讯作者:
Bogomilov M
Bogomilov M
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Bogomilov M

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低发射度的μ子束提供了强烈的、特征良好的中微子束的基础,这些中微子束是在中微子工厂阐明味道物理学所必需的,也是在μ子对撞机上提供能量高达几TeV的轻子-反轻子碰撞所必需的。国际μ子电离冷却实验(MICE)的目的是演示电离冷却,提出通过这种技术来减少μ子束在这些设施中所占据的相空间体积。在电离冷却通道中,μ子束穿过一种材料,并在其中损失能量。然后,使用射频谐振腔来替换损失的能量。能量损失和再加速的综合效应是减少束的横向发射度(横向冷却)。2014年夏季对项目范围进行了重大修订。修改后的实验可以提供电离冷却的演示。冷却演示实验的设计将与其预测的冷却性能一起描述。
Muon beams of low emittance provide the basis for the intense, well-characterized neutrino beams necessary to elucidate the physics of flavor at a neutrino factory and to provide lepton-antilepton collisions at energies of up to several TeV at a muon collider. The international Muon Ionization Cooling Experiment (MICE) aims to demonstrate ionization cooling, the technique by which it is proposed to reduce the phase-space volume occupied by the muon beam at such facilities. In an ionization-cooling channel, the muon beam passes through a material in which it loses energy. The energy lost is then replaced using rf cavities. The combined effect of energy loss and reacceleration is to reduce the transverse emittance of the beam (transverse cooling). A major revision of the scope of the project was carried out over the summer of 2014. The revised experiment can deliver a demonstration of ionization cooling. The design of the cooling demonstration experiment will be described together with its predicted cooling performance.
影响因子: 1.4
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