在 BESIII 研究超子-核子相互作用的前景

J. Dai, H. Li, H. Miao, Jianyu 张剑宇 Zhang
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引用次数: 0

摘要

这项工作提出了在 BESIII 和类似的 $e^+ e^-$ 对撞机上研究超子-核子/核子相互作用的前景。利用在BESIII收集到的由100亿$J/\psi$和27亿$\psi(3686)$衰变产生的大量超子,通过超子与原子核在BESIII探测器致密物体中的散射,可以测量几种特定弹性或非弹性超子-核反应的截面。随后,通过进一步的现象学计算,可以提取相应的超子-核子相互作用的截面。此外,本文提出的方法还可以研究反超子与原子核/核子之间的相互作用,包括散射和湮灭。这些结果必将对超子-核子/核子相互作用的精确探测大有裨益,并为强相互作用的潜力、色禁闭的起源、重子-重子相互作用的统一模型以及中子星内部结构的研究提供约束条件。此外,这项工作还讨论并估计了在未来的超级头粲工厂(STCF)中进行相应研究的理想前景。本文内容可根据知识共享署名 3.0 许可条款使用。如需进一步传播本作品,必须注明作者、作品名称、期刊引文和 DOI。文章由 SCOAP3 资助,由中国物理学会、中国科学院高能物理研究所、中国科学院近代物理研究所和 IOP Publishing Ltd. 授权出版。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prospects to study hyperon-nucleon interactions at BESIII
The prospects to study hyperon-nuclei/nucleon interactions at BESIII and similar $e^+ e^-$ colliders are proposed in this work. Utilizing the large quantity of hyperons produced by the decay of 10 billion $J/\psi$ and 2.7 billion $\psi(3686)$ collected at BESIII, the cross sections of several specific elastic or inelastic hyperon-nuclei reactions can be measured via the scattering between the hyperons and the nucleus in the dense objects of BESIII detector. Subsequently, the cross sections of corresponding hyperon-nucleon interactions are able to be extracted with further phenomenological calculation. Furthermore, the interactions between antihyperon and nuclei/nucleon, including scattering and annihilation, can also be studied via the method proposed in this paper. The results will definitely benefit a lot the precise probe of the hyperon-nuclei/nucleon interactions and provide constraints for the studies of the potential of strong interaction, the origin of color confinement, the unified model for baryon-baryon interactions, and the internal structure of neutron stars. In addition, the desirable prospects of corresponding studies in the future Super Tau-Charm Factory (STCF) are discussed and estimated in this work. Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI. Article funded by SCOAP3 and published under licence by Chinese Physical Society and the Institute of High Energy Physics of the Chinese Academy of Science and the Institute of Modern Physics of the Chinese Academy of Sciences and IOP Publishing Ltd.
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