arXiv · 2009.12035
Chiral crossover transition from the Dyson-Schwinger equations in a sphere
Abstract
Within the framework of Dyson--Schwinger equations of QCD, we study the effect of finite volume on the chiral phase transition in a sphere with the MIT boundary condition. We find that the chiral quark condensate $\langle\bar{\psi} \psi\rangle$ and pseudotransition temperature $T_{pc}$ of the crossover decreases as the volume decreases, until there is no chiral crossover transition at last. We find that the system for $R = \infty $\ fm is indistinguishable from $R=10$ fm and there is a significant decrease in $T_{pc}$ with $R$ as $R<4$ fm. When $R<1.5$ fm, there is no chiral transition in the system.
Explore related subjects
Keep this discovery
Yin-Zhen Xu, Chao Shi, Xiao-Tao He, Hong-Shi Zong. 2020-09-25. Chiral crossover transition from the Dyson-Schwinger equations in a sphere. https://doi.org/10.1103/physrevd.102.114011
Cite the original work for its findings. Save a collection to share your selection of sources.