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Chiral model for dense, hot and strange hadronic matter

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arxiv nucl-th/9908072 v1 pith:YUESM3NW submitted 1999-08-26 nucl-th

Chiral model for dense, hot and strange hadronic matter

classification nucl-th
keywords mattermodelbaryonchiraldensehadronicmassesstrange
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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An extended chiral SU(3) model is applied to the description of dense, hot and strange hadronic matter. The degrees of freedom are the baryon octet and decuplet and the spin-0 and spin-1 meson multiplets. The parameters of the model are fitted to the hadron masses in vacumm, infinite nuclear matter properties and soft pion theorems. At high densities the appearance of density isomers cannot be ruled out and extrapolation to finite temperature exhibits a first order phase transition at $T \approx 150 MeV$. The predicted dropping baryon masses lead to drastically changed particle ratios compared to ideal gas calculations.

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Cited by 1 Pith paper

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  1. Towards compressed baryonic matter densities: D meson diffusion

    nucl-th 2026-07 conditional novelty 4.0

    Using relaxation-time kinetic theory with a chiral hadronic model, the authors estimate that D meson spatial diffusion in dense nuclear matter decreases rapidly in a dilute-gas regime and mildly in a degenerate-gas regime.