首页> 外文期刊>International Journal of Modern Physics, A. Particles and Fields, Gravitation, Cosmology >Single-muon rate reduction for beam dump operation of the K12 beam line at CERN
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Single-muon rate reduction for beam dump operation of the K12 beam line at CERN

机译:CERN的K12光束线路梁转扣运行的单μm速率降低

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The Physics Beyond Colliders study investigates the feasibility of future projects and experiments using CERN facilities. In the scope of this study, a future operation of the NA62 experiment using the existing K12 beam line operated in beam dump mode is discussed. Such a setup allows for a search for dark sector particles, e.g. heavy neutral leptons, dark photons and axions. Production of these hypothetical particles requires the 400GeV/c proton beam extracted from the Super Proton Synchrotron (SPS) to be dumped on a massive dump collimator located in the first part of the K12 beam line. The decay of these dark sector particles, for example, into muons could be detected by the NA62 experimental setup. However, muons created in particle interactions with material and from in-flight decays of secondary hadrons pose a critical background for this kind of experiment. Magnetic sweeping serves as an efficient tool for reducing this background. This paper discusses the simulation studies conducted with the software framework G4beamline to reduce the expected single-muon rate for this experiment. The required beam line modifications, in particular the removal of the beryllium target and repositioning of the dump, have been implemented into this model. A comparison of simulated muon distributions and spectra available experimental data, already taken in test runs, has been made in order to validate the beam line simulation. Finally, additional beam line modifications to further suppress the muon background are elaborated upon. These studies show a potential further reduction of a factor four of the total single-muon rate relative to the nominal setup over the full momentum range, and up to a factor twenty considering only muons with momenta p > 15GeV/c.
机译:超越侵占者研究的物理研究调查了使用CERN设施的未来项目和实验的可行性。在本研究的范围内,讨论了使用在光束倾卸模式下操作的现有K12梁线的NA62实验的未来操作。这样的设置允许搜索暗扇区颗粒,例如暗扇区粒子。重型中性卵石,深色光子和轴。这些假设颗粒的产生需要从超级质子同步rotron(SPS)中提取的400gev / c质子束倾倒在位于K12梁线的第一部分中的大规模倾倒准直器上。例如,可以通过NA62实验设置检测这些暗扇形颗粒的衰减。然而,在与材料的颗粒相互作用中产生的μONs和次级腐烂的次级衰减为这种实验构成了关键背景。磁性扫描用作减少该背景的有效工具。本文讨论了软件框架G4Beamline进行了仿真研究,以降低该实验的预期单μ子率。已经实现了所需的光束线修改,特别是移除癌症的铍靶和重新定位,已经实施到该模型中。已经进行了模拟的MUON分布和光谱可用的实验数据,已经在测试运行中进行了比较,以验证光束线仿真。最后,详细阐述了进一步抑制MUON背景的额外梁线修改。这些研究表明,相对于全动力范围内的标称设置的总单μ子速率的潜力进一步减小了总量的四个,并且仅考虑μs的倍数p> 15gev / c。

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