Author:
Guo Xi,Jiang Jia-Jie,Liu Xuan,Chen Xun,Xiang Dong,Li Xiao-Hua
Abstract
AbstractIn this paper, we employ gauge/gravity duality to investigate the string breaking and melting of doubly-heavy tetraquark that includes two heavy quarks and two light antiquarks in a holographic model at finite temperature. Firstly, four different configurations of $${{\textrm{QQ}}}\bar{{\textrm{q}}}\bar{{\textrm{q}}}$$
QQ
q
¯
q
¯
are studied at different separation distances of the heavy quarks at finite temperatures. At high temperature, $${{\textrm{QQ}}}\bar{{\textrm{q}}}\bar{{\textrm{q}}}$$
QQ
q
¯
q
¯
will melt at certain distances and the screening distance has been given for different temperatures. As the temperature continues to increase, some configurations of doubly-heavy tetraquark can not exist. Furthermore, we investigate three decay modes of $${{\textrm{QQ}}}\bar{{\textrm{q}}}\bar{{\textrm{q}}}$$
QQ
q
¯
q
¯
and compare the potential energy of $${{\textrm{QQ}}}\bar{{\textrm{q}}}\bar{{\textrm{q}}}$$
QQ
q
¯
q
¯
with that of $${\textrm{QQq}}$$
QQq
at finite temperature.
Funder
National Natural Science Foundation of China
Research Foundation of Education Bureau of Hunan Province, China
Natural Science Foundation of Hunan Province of China
Publisher
Springer Science and Business Media LLC
Cited by
2 articles.
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