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- W2000672107 abstract "We compare the lattice results on QCD phase diagram for two and three flavors with the hadron resonance gas model (HRGM) calculations. Lines of constant energy density $epsilon$ have been determined at different baryo-chemical potentials $mu_B$. For the strangeness chemical potentials $mu_S$, we use two models. In one model, we explicitly set $mu_S=0$ for all temperatures and baryo-chemical potentials. This assignment is used in lattice calculations. In the other model, $mu_S$ is calculated in dependence on $T$ and $mu_B$ according to the condition of vanishing strangeness. We also derive an analytical expression for the dependence of $T_c$ on $mu_B/T$ by applying Taylor expansion of $epsilon$. In both cases, we compare HRGM results on $T_c-mu_B$ diagram with the lattice calculations. The agreement is excellent, especially when the trigonometric function of $epsilon$ is truncated up to the same order as done in lattice simulations. For studying the efficiency of the truncated Taylor expansion, we calculate the radius of convergence. For zero- and second-order radii, the agreement with lattice is convincing. Furthermore, we make predictions for QCD phase diagram for non-truncated expressions and physical masses. These predictions are to be confirmed by heavy-ion experiments and future lattice calculations with very small lattice spacing and physical quark masses." @default.
- W2000672107 created "2016-06-24" @default.
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- W2000672107 date "2005-03-08" @default.
- W2000672107 modified "2023-10-10" @default.
- W2000672107 title "QCD phase diagram: A comparison of lattice and hadron resonance gas model calculations" @default.
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- W2000672107 doi "https://doi.org/10.1103/physrevd.71.054502" @default.
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