在“超越对撞机的物理”中CERN M2光束线的新实验研究:AMBER/COMPASS++, NA64µ,MuonE

J. Bernhard, D. Banerjee, E. Montbarbon, M. Brugger, N. Charitonidis, S. Cholak, G. D'Alessandro, L. Gatignon, A. Gerbershagen, B. Rae, M. Rosenthal, M. Dijk, B. M. Veit
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引用次数: 7

摘要

“超越对撞机的物理(PBC)”研究探索了欧洲核子研究中心加速器综合体对对撞机实验的补充基础物理机会。三个新的合作项目旨在利用现有的高强度介子和强子光束开发北区的M2光束线,但也渴望超越目前的M2能力,使用rf分离的高强度强子光束,正在研究中。AMBER/COMPASS++合作计划提出了一个雄心勃勃的计划,包括用介子束测量质子半径,以及从介子pdf / Drell-Yan到暗扇区搜索横截面测量的qcd相关研究。假设rf分离光束的可行性,奇异介子的光谱将进入高精度时代,而通过Drell-Yan反应可以获得kaon pdf和核子tmd。NA64mu合作项目建议使用M2 μ介子束搜索暗标量a '或假想的Z_mu,并用电子束补充他们正在进行的a '搜索。MuonE合作计划通过弹性mu-e散射来评估真空极化的强子成分,这是确定(g-2)_mu的主要不确定性。基于PBC“常规光束”工作组的研究,将概述三个新的实验方案,以及对M2光束线和实验区域EHN2的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Studies for new experiments at the CERN M2 beamline within “physics beyond colliders”: AMBER/COMPASS++, NA64µ, MuonE
The "Physics Beyond Colliders (PBC)" study explores fundamental physics opportunities at the CERN accelerator complex complementary to collider experiments. Three new collaborations aim to exploit the M2 beamline in the North Area with existing high-intensity muon and hadron beams, but also aspire to go beyond the current M2 capabilities with a RF-separated, high intensity hadron beam, under study. The AMBER/COMPASS++ collaboration proposes an ambitious program with a measurement of the proton radius with muon beams, as well as QCD-related studies from pion PDFs / Drell-Yan to cross section measurements for dark sector searches. Assuming feasibility of the RF-separated beam, the spectrum of strange mesons would enter a high precision era while kaon PDFs as well as nucleon TMDs would be accessible via Drell-Yan reactions. The NA64mu collaboration proposes to search for dark sector mediators such as a dark scalar A' or a hypothetical Z_mu using the M2 muon beam and complementing their on-going A' searches with electron beams. The MuonE collaboration intends to assess the hadronic component of the vacuum polarization via elastic mu-e scattering, the dominant uncertainty in the determination of (g-2)_mu. An overview of the three new experimental programs will be presented together with implications for the M2 beamline and the experimental area EHN2, based on the studies of the PBC "Conventional Beams" Working Group.
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