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首页> 外文期刊>International journal of modern physics, E. Nuclear physics >Simultaneous muon and reference hadron measurements in the compressed baryonic matter experiment at FAIR
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Simultaneous muon and reference hadron measurements in the compressed baryonic matter experiment at FAIR

机译:同时μ子和参考展览中压缩的巧克力物质实验中的强子测量

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摘要

The mission of the Compressed Baryonic Matter (CBM) experiment at the future Facility for Antiproton and Ion Research (FAIR) in Darmstadt is to explore the QCD phase diagram at high net baryon densities likely to exist in the core of neutron stars. The CBM detector system is designed to perform multi-differential measurements of hadrons and leptons in central gold-gold collisions at beam energies between 2 and 11 A GeV with unprecedented precision and statistics. In order to reduce the systematic errors of the lepton measurements, which generally suffer from a large combinatorial background, both electrons and muons will be measured with the same acceptance. Up to now, no di-muon measurements have been performed in heavy-ion collisions at beam energies below 158 A GeV. The main device for electron identification, a Ring Imaging Cherenkov (RICH) detector, can be replaced by a setup comprising hadron absorbers and tracking detectors for muon measurements. In order to obtain a complete picture of the reaction, it is important to measure simultaneously leptons and hadrons. This requirement is fulfilled for the RICH, which has a low material budget, and only little affects the trajectories of hadrons on their way to the Time-of-Flight (TOF) detector. In contrast, the simultaneous measurement of muons and hadrons within the same experimental acceptance poses a substantial challenge. This article reviews the simulated performance of the CBM experiment for muon identification, together with the possibility of simultaneous hadron measurements.
机译:达姆施塔特的未来设施(达姆施塔特离子研究(公平)的压缩辐射物质(CBM)实验的使命是探索可能存在于中子恒星核心的高净密度的QCD相图。 CBM检测器系统旨在在具有前所未有的精度和统计的GEV的光束能量下,在中央金碰撞中对中央金碰撞中的Harrons和Leptons进行多差分测量。为了降低Lepton测量的系统误差,这通常遭受大型组合背景,电子和μONs将以相同的接受测量。到目前为止,在158个GEV下的光束能量下,在重离子碰撞中没有进行二μμON测量。用于电子识别的主装置,一个环成像Cherenkov(富人)检测器,可以由包括强子吸收器和用于MuON测量的跟踪检测器的设置代替。为了获得反应的完整图像,重要的是要同时测量leptons和habrons。这一要求是为富人提供低材料预算的富人,而且只影响到飞行时间(TOF)探测器的路上的小问题。相比之下,同样实验验收中同时测量μONs和HOTRONS构成了大量挑战。本文审查了CBM实验的模拟性能,以及同时强发阵测量的可能性。

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