个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:北京大学
学位:博士
所在单位:物理学院
学科:理论物理. 粒子物理与原子核物理
办公地点:物理楼430
联系方式:13478905891
电子邮箱:wjfu@dlut.edu.cn
QCD phase structure at finite temperature and density
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论文类型:期刊论文
发表时间:2020-03-24
发表刊物:PHYSICAL REVIEW D
收录刊物:SCIE
卷号:101
期号:5
ISSN号:2470-0010
摘要:We discuss the phase structure of QCD for N-f = 2 and N-f = 2 + 1 dynamical quark flavors at finite temperature and baryon chemical potential. It emerges dynamically from the underlying fundamental interactions between quarks and gluons in our work. To this end, starting from the perturbative high-energy regime, we systematically integrate out quantum fluctuations toward low energies by using the functional renormalization group. By dynamically hadronizing the dominant interaction channels responsible for the formation of light mesons and quark condensates, we are able to extract the phase diagram for mu(B)/T less than or similar to 6. We find a critical endpoint at (T-CEP; mu(BCEP))= (107; 635) MeV. The curvature of the phase boundary at small chemical potential is. = 0.0142o2THORN, computed from the renormalized light chiral condensate.l;R. Furthermore, we find indications for an inhomogeneous regime in the vicinity and above the chiral transition for mu(B) greater than or similar to 417 MeV. Where applicable, our results are in very good agreement with the most recent lattice results. We also compare to results from other functional methods and phenomenological freeze-out data. This indicates that a consistent picture of the phase structure at finite baryon chemical potential is beginning to emerge. The systematic uncertainty of our results grows large in the density regime around the critical endpoint and we discuss necessary improvements of our current approximation toward a quantitatively precise determination of QCD phase diagram.