中微子物理与欧洲核子研究中心的SHiP实验

C. Yoon
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引用次数: 0

摘要

SHiP是一种新型的通用固定目标设备,其技术提案最近已由CERN SPS委员会和CERN研究委员会进行了审查。两个委员会建议,在新的CERN“超越对撞机的物理”工作组的背景下,实验进一步进入全面设计阶段,旨在为2019年的欧洲战略会议提交CERN战略。在初始阶段,从SPS中提取的400 GeV质子束将被倾倒在一个重目标上,目标是在5年内整合$2\times10^{20}$ pot。一个专门的探测器将允许研究中微子的横截面和角分布。$\nu_{\tau}$深层非弹性散射截面的测量将比目前可用的统计量大1000倍,提取迄今为止从未测量过的F4和F5结构函数,并允许对具有BSM物理敏感性的轻子非普惠性进行新的测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neutrino physics with the SHiP experiment at CERN
SHiP is a new general purpose fixed target facility, whose Technical Proposal has been recently reviewed by the CERN SPS Committee and by the CERN Research Board. The two boards recommended that the experiment proceeds further to a Comprehensive Design phase in the context of the new CERN Working group "Physics Beyond Colliders", aiming at presenting a CERN strategy for the European Strategy meeting of 2019. In its initial phase, the 400 GeV proton beam extracted from the SPS will be dumped on a heavy target with the aim of integrating $2\times10^{20}$ pot in 5 years. A dedicated detector will allow the study of neutrino cross-sections and angular distributions. $\nu_{\tau}$ deep inelastic scattering cross sections will be measured with a statistics 1000 times larger than currently available, with the extraction of the F4 and F5 structure functions, never measured so far and allow for new tests of lepton non-universality with sensitivity to BSM physics.
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