arXiv · 2112.02210
The Emission Order of Hydrogen Isotopes via Correlation Functions in 30 MeV/u Ar+Au Reactions
Abstract
The intensity interferometry is applied as a chronometer of the particle emission of hydrogen isotopes from the intermediate velocity source formed in $^{40}$Ar+$^{197}$Au reactions at 30 MeV/u. The dynamic emission order of $\tau_{\rm p}>\tau_{\rm d}>\tau_{\rm t}$ is evidenced via the correlation functions of nonidentical particle pairs. Assuming the similar source size, the same emission order is inferred from the correlation functions of identical particle pairs, where $\tau_{\rm p} \approx 100 {\rm ~fm/c}$ is extracted by the fit of Koonin-Pratt equation to p-p correlation function. Transport model simulations demonstrate that the dynamic emission order of light charged particles depends on the stiffness of the nuclear symmetry energy.
Explore related subjects
Keep this discovery
Yijie Wang, Fenhai Guan, Qianghua Wu, Xinyue Diao, Yan Huang, Liming Lyu, Yuhao Qin, Zhi Qin, Dawei Si, Zhen Bai, Fangfang Duan, Limin Duan, Zhihao Gao, Qiang Hu, Rongjiang Hu, Genming Jin, Shuya Jin, Junbing Ma, Peng Ma, Jiansong Wang, Peng Wang, Yufeng Wang, Xianglun Wei, Herun Yang, Yanyun Yang, Gongming Yu, Yuechao Yu, Yapeng Zhang, Qingwu Zhou, Yaofeng Zhang, Chunwang Ma, Xinrong Hu, Hongwei Wang, Yunyi Cui, Junlong Tian, Zhigang Xiao. 2021-12-04. The Emission Order of Hydrogen Isotopes via Correlation Functions in 30 MeV/u Ar+Au Reactions. https://doi.org/10.1016/j.physletb.2021.136856
Cite the original work for its findings. Save a collection to share your selection of sources.