RF system for the MICE demonstration of ionisation cooling

RF system for the MICE demonstration of ionisation cooling
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用于 MICE 电离冷却演示的射频系统

DOI:
10.1109/ivec.2017.8289634
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发表时间:
2017
期刊:
--
影响因子:
--
通讯作者:
Ronald K
Ronald K
中科院分区:
--
文献类型:
--
作者:
Ronald K

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μ子加速器为未来一系列粒子物理实验提供了一个有吸引力的选择。它们可以实现高能(TeV+)高能轻子对撞机,同时减轻同步加速器损失的困难,并可以为研究风味物理的基础物理实验提供强烈的中微子束。产生介子光束的方法导致光束发射度高,为了有效加速,必须降低发射度。考虑到μ子的停留时间很短(2.2微秒),传统的发射度控制方案耗时太长。电离冷却提供了一种更快的方法来降低粒子发射度,国际MICE合作旨在首次展示这种技术。本文将介绍MICE射频系统及其在整个实验中的作用。
Muon accelerators offer an attractive option for a range of future particle physics experiments. They can enable high energy (TeV+) high energy lepton colliders whilst mitigating the difficulty of synchrotron losses, and can provide intense beams of neutrinos for fundamental physics experiments investigating the physics of flavor. The method of production of muon beams results in high beam emittance which must be reduced for efficient acceleration. Conventional emittance control schemes take too long, given the very short (2.2 microsecond) rest lifetime of the muon. Ionisation cooling offers a much faster approach to reducing particle emittance, and the international MICE collaboration aims to demonstrate this technique for the first time. This paper will present the MICE RF system and its role in the context of the overall experiment.
DOI: 10.22323/1.226.0124
发表时间: 2013-12
期刊: --
影响因子: --
作者:
K. Ronald;C. Whyte;A. Dick;A. Moss;A. Grant;C. White;P. Corlett;T. Stanley;D. Li;A. Demello;S. Virostek;A. Moretti;R. Pasquinelli;D. Peterson;R. Schultz;J. Volk;Y. Torun;P. Hanlet;K. Long;J. Pasternak;C. Hunt;D. Summers;T. Luo;Pete Smith
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DOI: 10.1088/1748-0221/11/03/p03001
发表时间: 2015-11
影响因子: 1.3
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DOI: --
发表时间: 2012
期刊:
影响因子: --
作者:
T. Luo;D. Summers;A. Demello;Derun Li;C. Redding;S. Virostek;M. Zisman
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发表时间: 2014-06
期刊: --
影响因子: --
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