Measurements of muon multiple scattering in MICE

Measurements of muon multiple scattering in MICE
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MICE 中 μ 子多重散射的测量

DOI:
10.1088/1742-6596/888/1/012212
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发表时间:
2017
期刊:
Conference Series
影响因子:
--
通讯作者:
Bayes R
Bayes R
中科院分区:
--
文献类型:
--
作者:
Bayes R

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中微子工厂已被确定为对中微子振荡物理进行精确测量的最佳设施。为了充分实现这一技术,必须演示Muon束相空间的缩减。Muon电离冷却实验(MICE)的任务就是提供这样的演示。电离冷却使用低Z材料中的能量损失,然后在射频腔中加速,以缩小光束的相空间,其时间尺度比Muon衰变的时间尺度小许多倍。多个库仑散射(MCS)同时使介子束膨胀,因此必须很好地理解能量损失和MCS之间的相互作用。不幸的是,在GEANT蒙特卡罗程序的感兴趣的材料中,MCS没有被很好地模拟。一项计划已经开始,让小鼠测量几种感兴趣的材料中的MCS,包括氢化锂、液氢和气态氙气。文中将介绍实验方法和初步结果。
Neutrino factories have been identified as the best facility for making precision measurements of neutrino oscillation physics. To fully realize this technology, a demonstration of the reduction of the phase space of a muon beam must be presented. The Muon Ionization Cooling Experiment (MICE) is tasked with providing such a demonstration. Ionization cooling uses the energy loss in a low Z material followed by acceleration in RF cavities to reduce the phase space of a beam on a time scale many times less than the time scale of muon decay. Multiple coulomb scattering (MCS) simultaneously inflates the muon beam and so the interplay between energy loss and MCS must be well understood. Unfortunately MCS is not well simulated in the materials of interest in the GEANT Monte Carlo program. A programme has commenced for MICE to measure MCS in several materials of interest including lithium hydride, liquid hydrogen, and gaseous xenon. The experimental methods and early results will be presented.
μ子在低Z材料中的散射
影响因子: 1.3
作者:
MuScat Collaboration D. Attwood;P. Bell;S. Bull;T. Mcmahon;J. Wilson;R. Fernow;P. Gruber;A. Jamdagni;K. Long;E. Mckigney;P. Savage;M. Curtis;T. Edgecock;M. Ellis;J. Lidbury;W. Murray;P. Norton;K. Peach;K. Ishida;Y. Matsuda;K. Nagamine;S. Nakamura;G. Marshall;S. Benveniste;D. Cline;Y. Fukui;K. Lee;Y. Pischalnikov;S. Holmes;A. Bogacz
通讯作者: A. Bogacz
DOI: 10.1140/epjc/s10052-013-2582-8
发表时间: 2013
期刊: The European Physical Journal C
影响因子: --
作者:
Adams D
通讯作者: Adams D