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arXiv:2305.00507·v2·High Energy Physics — Phenomenology

(pseudo)Scalar mesons in a self-consistent NJL model

Xiaozhu Yu🇨🇳 · Xinyang Wang🇨🇳

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Abstract

In this study, we investigate the mass spectrum of and mesons at finite chemical potential using the self-consistent NJL model and the Fierz-transformed interaction Lagrangian. The model introduces an arbitrary parameter to reflect the weights of the Fierz-transformed interaction channels. We show that when exceeds a certain threshold value, the chiral phase transition transforms from a first-order one to a smooth crossover, which is evident from the behaviors of the chiral condensates and meson masses. Additionally, at high chemical potential, the smaller the value of , the higher the masses of the and mesons become. Moreover, the Mott and dissociation chemical potentials both increase with the increase in . Thus, the meson mass emerges as a valuable experimental observable for determining the value of and investigating the properties of the chiral phase transition in dense QCD matter.

Comments: Accepted by Chinese Physics C

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