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    Experimental study of bremsstrahlung γ-ray emission and short-range correlations in Sn124+Sn124 collisions at 25 MeV/nucleon

    Junhuai Xu1,*, Qinglin Niu2,†, Yuhao Qin1, Dawei Si1, Yijie Wang1, Sheng Xiao1, Baiting Tian1, Zhi Qin1, Haojie Zhang1 et al.

    Boyuan Zhang1, Dong Guo1, Minxue Fu1, Xiaobao Wei3, Yibo Hao3, Zengxiang Wang3, Tianren Zhuo3, Chunwang Ma3,4, Yuansheng Yang5, Xianglun Wei5, Herun Yang5, Peng Ma5, Limin Duan5, Fangfang Duan5, Kang Wang5, Junbing Ma5, Shiwei Xu5, Zhen Bai5, Guo Yang5, Yanyun Yang5, Mengke Xu6, Kaijie Chen6, Zirui Hao6, Gongtao Fan6, Hongwei Wang6, Chang Xu2,‡, and Zhigang Xiao1,7,§

    • *Contact author: xjh22@mails.tsinghua.edu.cn
    • †Contact author: 602023220053@smail.nju.edu.cn
    • ‡Contact author: cxu@nju.edu.cn
    • §Contact author: xiaozg@tsinghua.edu.cn

    Phys. Rev. C 113, 044613 – Published 16 April, 2026

    DOI: https://doi.org/10.1103/dhz2-nl56

    Abstract

    Short-range correlation (SRC) in nuclei refers to nucleons forming temporally correlated pairs in close proximity, giving rise to the high momentum of the nucleons beyond the Fermi surface. It has been reported that bremsstrahlung γ production from the neutron-proton process in heavy-ion reactions provides a potential probe to the SRC abundance in nuclei. In this paper, we present in detail the precision measurement of bremsstrahlung γ rays in Sn124+Sn124 reactions at 25 MeV/nucleon using the Compact Spectrometer for Heavy IoN Experiment (CSHINE). A comprehensive experimental and analysis framework is established to ensure the reliability and robustness of the extracted results. Background contributions are evaluated and subtracted using independent methods, and the consistency of the analysis is systematically validated. By comparing the experimental γ spectrum with isospin-dependent Boltzmann-Uehling-Uhlenbeck simulations, the high momentum tail (HMT) fraction of RHMT=(20±3)% is derived in Sn124 nuclei. This work provides a detailed and validated experimental framework for extracting SRC information from bremsstrahlung γ-ray emission and demonstrates the feasibility of studying nucleon SRCs with high precision in low-energy heavy-ion collisions.

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