Production of doubly charmed hadrons Σcc++ and Tcc+ in relativistic heavy-ion collisions

被引:1
作者
Chen, Baoyi [1 ]
Yang, Meimei [1 ]
Chen, Ge [2 ]
Zhao, Jiaxing [3 ]
Liu, Xiao-hai [1 ]
机构
[1] Tianjin Univ, Dept Phys, Tianjin 300350, Peoples R China
[2] UCL, Dept Phys & Astron, Gower St, London WC1E 6BT, England
[3] Univ Nantes, SUBATECH, IMT Atlantique, CNRS,IN2P3, 4 Rue Alfred Kastler, F-44307 Nantes 3, France
基金
中国国家自然科学基金;
关键词
ENERGY-LOSS; COALESCENCE; PENTAQUARK;
D O I
10.1103/PhysRevC.109.064909
中图分类号
O57 [原子核物理学、高能物理学];
学科分类号
070202 ;
摘要
Heavy-ion collisions provide a unique opportunity for studying the properties of exotic hadrons with two charm quarks. The production of T-cc(+) is significantly enhanced in nuclear collisions compared to proton-proton collisions due to the creation of multiple-charm pairs. In this study, we employ the Langevin equation in combination with the instantaneous coalescence model (LICM) to investigate the production of T-cc(+) and Sigma(++)(cc) which consists of two charm quarks. We consider T-cc(+) as molecular states composed of D and D* mesons. The Langevin equation is used to calculate the energy loss of charm quarks and D mesons in the hot medium. The hadronization process, where charm quarks transform into each D state as constituents of T-cc(+) production, is described using the coalescence model. The coalescence probability between D and D* is determined by the Wigner function, which encodes the information of the T-cc(+) wave function. Our results show that the T-cc(+) production varies by approximately 1 order of magnitude when different widths in the Wigner function, representing distinct binding energies of T-cc(+), are considered. This variation offers valuable insights into the nature of T-cc(+) through the analysis of its wave function. Sigma(++)(cc) is treated as a hadronic state produced at the hadronization of the deconfined matter. Its production is also calculated as a comparison with the molecular state T-cc(+).
引用
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页数:8
相关论文
共 81 条
  • [71] DD* potentials in chiral effective field theory and possible molecular states
    Xu, Hao
    Wang, Bo
    Liu, Zhan-Wei
    Liu, Xiang
    [J]. PHYSICAL REVIEW D, 2019, 99 (01)
  • [72] J/ψ production in quark-gluon plasma
    Yan, Li
    Zhuang, Pengfei
    Xu, Nu
    [J]. PHYSICAL REVIEW LETTERS, 2006, 97 (23)
  • [73] X (3872) and Tcc: Structures and productions in heavy ion collisions
    Yun, Hyeongock
    Park, Daeho
    Noh, Sungsik
    Park, Aaron
    Park, Woosung
    Cho, Sungtae
    Hong, I. I. Juhee
    Kim, Yongsun
    Lim, Sanghoon
    Lee, Su Houng
    [J]. PHYSICAL REVIEW C, 2023, 107 (01)
  • [74] Heavy quark energy loss in a nuclear medium
    Zhang, BW
    Wang, E
    Wang, XN
    [J]. PHYSICAL REVIEW LETTERS, 2004, 93 (07) : 072301 - 1
  • [75] Zhao JX, 2024, Arxiv, DOI arXiv:2401.17096
  • [76] Fully-heavy tetraquarks in a strongly interacting medium
    Zhao, Jiaxing
    Shi, Shuzhe
    Zhuang, Pengfei
    [J]. PHYSICAL REVIEW D, 2020, 102 (11)
  • [77] Heavy flavors under extreme conditions in high energy nuclear collisions
    Zhao, Jiaxing
    Zhou, Kai
    Chen, Shile
    Zhuang, Pengfei
    [J]. PROGRESS IN PARTICLE AND NUCLEAR PHYSICS, 2020, 114 (114)
  • [78] Searching for Ξcc+ in relativistic heavy ion collisions
    Zhao, Jiaxing
    He, Hang
    Zhuang, Pengfei
    [J]. PHYSICS LETTERS B, 2017, 771 : 349 - 353
  • [79] Multicharmed Baryon Production in High Energy Nuclear Collisions
    Zhao, Jiaxing
    Zhuang, Pengfei
    [J]. FEW-BODY SYSTEMS, 2017, 58 (02)
  • [80] Probing the Partonic Degrees of Freedom in High-Multiplicity p-Pb collisions at √sNN=5.02 TeV
    Zhao, Wenbin
    Ko, Che Ming
    Liu, Yu-Xin
    Qin, Guang-You
    Song, Huichao
    [J]. PHYSICAL REVIEW LETTERS, 2020, 125 (07)