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Functional renormalization group study of ρ meson condensate at a finite isospin chemical potential in the quark meson model

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【作者】 Mohammed Osman侯德富王文韬张辉

【Author】 Mohammed Osman;Defu Hou;Wentao Wang;Hui Zhang;IOPP and key laboratory of Quark and lepton physics (MOE),Central China Normal University;State Key Laboratory of Nuclear Physics and Technology, Institute of Quantum Matter, South China Normal University;Guangdong Basic Research Center of Excellence for Structure and Fundamental Interactions of Matter, Guangdong Provincial Key Laboratory of Nuclear Science;Physics Department and Center for Exploration of Energy and Matter, Indiana University;

【机构】 IOPP and key laboratory of Quark and lepton physics (MOE),Central China Normal UniversityState Key Laboratory of Nuclear Physics and Technology, Institute of Quantum Matter, South China Normal UniversityGuangdong Basic Research Center of Excellence for Structure and Fundamental Interactions of Matter, Guangdong Provincial Key Laboratory of Nuclear SciencePhysics Department and Center for Exploration of Energy and Matter, Indiana University

【摘要】 We investigated the effect of an isospin chemical potential(??I) within the quark-meson model, which approximates quantum chromodynamics(QCD) by modeling low-energy phenomena such as chiral symmetry breaking and phase structure under varying conditions of temperature and chemical potential. Using the functional renormalization group(FRG) flow equations, we calculated the phase diagram in the chiral limit within the two-flavor quark-meson model in a finite ??I with ρ vector meson interactions. Fluctuation effects significantly decrease the critical chemical potential from the mean-field(MF) value ??I,MF> mρ to a lower value at which the ρ vector meson condensates alongside the chiral condensate once the isospin chemical potential exceeds the critical value ??critI. This ρ condensation was investigated numerically for different meson coupling strengths. The ρ meson dominated region is delineated from other phases by a second-order phase transition at lower ??I and a first-order transition at slightly higher ??I.

【Abstract】 We investigated the effect of an isospin chemical potential(??I) within the quark-meson model, which approximates quantum chromodynamics(QCD) by modeling low-energy phenomena such as chiral symmetry breaking and phase structure under varying conditions of temperature and chemical potential. Using the functional renormalization group(FRG) flow equations, we calculated the phase diagram in the chiral limit within the two-flavor quark-meson model in a finite ??I with ρ vector meson interactions. Fluctuation effects significantly decrease the critical chemical potential from the mean-field(MF) value ??I,MF> mρ to a lower value at which the ρ vector meson condensates alongside the chiral condensate once the isospin chemical potential exceeds the critical value ??critI. This ρ condensation was investigated numerically for different meson coupling strengths. The ρ meson dominated region is delineated from other phases by a second-order phase transition at lower ??I and a first-order transition at slightly higher ??I.

【基金】 Supported in part by the National Key Research and Development Program of China (2022YFA1604900);partly supported by the National Natural Science Foundation of China (NSFC)(12435009, 12275104);the financial support from the Guangdong Major Project of Basic and Applied Basic Research (2020B0301030008);the National Natural Science Foundation of China (12047523, 12105107)
  • 【文献出处】 Chinese Physics C ,中国物理C(英文) , 编辑部邮箱 ,2026年04期
  • 【分类号】O572.33
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