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Progress in vacuum susceptibilities and their applications to the chiral phase transition of QCD
The QCD vacuum condensates and various vacuum susceptibilities are all important parameters which characterize the nonperturbative properties of the QCD vacuum. In the QCD sum rules external field formula, various QCD vacuum susceptibilities play important roles in determining the properties of hadr...
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Published in: | Annals of physics 2015-07, Vol.358, p.172-205 |
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container_title | Annals of physics |
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creator | Cui, Zhu-Fang Hou, Feng-Yao Shi, Yuan-Mei Wang, Yong-Long Zong, Hong-Shi |
description | The QCD vacuum condensates and various vacuum susceptibilities are all important parameters which characterize the nonperturbative properties of the QCD vacuum. In the QCD sum rules external field formula, various QCD vacuum susceptibilities play important roles in determining the properties of hadrons. In this paper, we review the recent progress in studies of vacuum susceptibilities together with their applications to the chiral phase transition of QCD. The results of the tensor, the vector, the axial–vector, the scalar, and the pseudo-scalar vacuum susceptibilities are shown in detail in the framework of Dyson–Schwinger equations. |
doi_str_mv | 10.1016/j.aop.2015.03.025 |
format | article |
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subjects | Chiral phase transition CHIRALITY CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS Dyson–Schwinger equations PHASE TRANSFORMATIONS Phase transitions Physics QUANTUM CHROMODYNAMICS SUM RULES Vacuum susceptibility Vacuum technology |
title | Progress in vacuum susceptibilities and their applications to the chiral phase transition of QCD |
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