Huizhou Hadron Spectrometer -- a Proposed High-rate Experimental Setup at the High Intensity Heavy-ion Accelerator Facility
Xurong Chen, Yunyun Fan, Shuangshi Fang, Zhao-Qing Feng, Feng-Kun Guo, Weijia Han, Jun He, Qinghua He, Xionghong He, Hongxia Huang, Xiaolin Kang, Hongli Ma, Weihu Ma, Yong-Liang Ma, Norihito Muramatsu, Zaiba Mushtaq, Xiaoyang Niu, Jialun Ping, Hao Qiu, Jun Shi, Ye Tian

TL;DR
The paper proposes the Huizhou Hadron Spectrometer (HHaS), a high-rate experimental setup at HIAF in China, designed to explore fundamental physics phenomena with advanced detection capabilities and unprecedented event rates.
Contribution
It introduces a novel conceptual design for HHaS, integrating advanced detectors and aiming for high event rates to enhance experimental particle and nuclear physics research.
Findings
Design achieves 1% track momentum resolution
Electromagnetic energy resolution of ~3% at 1 GeV
Event rate capability of 1-100 MHz
Abstract
The High-Intensity Heavy-Ion Accelerator Facility (HIAF), currently under construction in Huizhou, Guangdong Province, China, is projected to be completed by 2025. This facility will be capable of producing proton and heavy-ion beams with energies reaching several GeV, thereby offering a versatile platform for advanced fundamental physics research. Key scientific objectives include exploring physics beyond the Standard Model through the search for novel particles and interactions, testing fundamental symmetries, investigating exotic hadronic states such as di-baryons, pentaquark states and multi-strange hypernuclei, conducting precise measurements of hadron and hypernucleus properties, and probing the phase boundary and critical point of nuclear matter. To facilitate these investigations, we propose the development of a dedicated experimental apparatus at HIAF - the Huizhou Hadron…
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Taxonomy
TopicsRadiation Detection and Scintillator Technologies · Nuclear physics research studies · Neutrino Physics Research
