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Mesonic and nucleon fluctuation effects at finite baryon density

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abstract

Mesonic and nucleon fluctuation effects are investigated in medium. We couple the nucleon field to the $2+1$ flavor meson model and investigate the finite temperature and density behavior of the system, in particular, the axial anomaly function. Somewhat contrary to earlier expectations we find that it tends to strengthen at finite density. At lower temperatures nucleon density fluctuations can cause a relative difference in the $U_A(1)$ axial anomaly of about $20\%$. This has important consequences on the mesonic spectra, especially on the $\eta-\eta'$ system, as we observe no drop in the $\eta'$ mass as a function of the baryochemical potential, irrespective of the temperature. Based on the details of chiral symmetry restoration, it is argued that there has to be a competition between underlying QCD effects of the anomaly and fluctuations of the low energy hadronic degrees of freedom, and the fate of the $U_A(1)$ coefficient should be decided by taking into account both effects simultaneously.

fields

hep-ph 1

years

2026 1

verdicts

UNVERDICTED 1

representative citing papers

FRG analysis of dense two-color QCD within the linear sigma model

hep-ph · 2026-06-30 · unverdicted · novelty 4.0

FRG analysis in the linear sigma model for QC2D shows enhanced meson U(1)_A anomaly couplings with increasing mu_q but suppressed topological susceptibility following chiral restoration at high density or temperature.

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Showing 1 of 1 citing paper.

  • FRG analysis of dense two-color QCD within the linear sigma model hep-ph · 2026-06-30 · unverdicted · none · ref 35 · internal anchor

    FRG analysis in the linear sigma model for QC2D shows enhanced meson U(1)_A anomaly couplings with increasing mu_q but suppressed topological susceptibility following chiral restoration at high density or temperature.