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ON THE THERMODYNAMICS OF HOT HADRONIC MATTER

机译:热铁质物质的热力学

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摘要

The equation of state of hot hadronic matter is obtained, by taking into account the contribution of the massive states, with the help of the resonance spectrum tau(m) similar to m(3) justified by the authors in previous papers. This equation of state is in agreement with that provided by the low-temperature expansion for the pion interacting gas. The formulas for the temperature dependence of the non-strange and strange quark condensates are derived by taking into account the contribution of the massive resonances. The critical temperature of the chiral symmetry restoration transition is established to be 190 MeV if only meson resonances are considered, and 180 MeV if both meson and baryon resonances are taken into account. The phase transition of chiral symmetry restoration is modelled by the restriction of the number of the effective degrees of freedom in the hadron phase to that of the microscopic degrees of freedom in the quark-gluon phase, through the corresponding truncation of the hadronic resonance spectrum, and the decrease of the effective hadron masses with temperature predicted by Brown and Rho. The results are in agreement with lattice gauge data and show a smooth crossover in the thermodynamic variables in a temperature range similar to 50 MeV. [References: 82]
机译:通过考虑质量态的贡献,借助于类似于先前论文中证明的m(3)的共振谱tau(m),获得了强强子物质的状态方程。该状态方程与通过低温膨胀的介子相互作用气体所提供的状态方程是一致的。通过考虑大量共振的贡献,得出非奇异夸克冷凝物的温度依赖性公式。如果仅考虑介子共振,则手性对称恢复过渡的临界温度确定为190 MeV,如果同时考虑介子共振和重子共振,则确定为180 MeV。手性对称性恢复的相变是通过强子共振光谱的相应截断,将强子相中的有效自由度数限制为夸克-胶子相中的微观自由度数来建模的, Brown和Rho预测有效强子质量随温度的降低而降低。结果与晶格规数据一致,并且显示出在类似于50 MeV的温度范围内热力学变量的平滑转换。 [参考:82]

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