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Studies in the statistical and thermal properties of hadronic matter under some extreme conditions

机译:在某些极端条件下强子物质的统计和热学性质的研究

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摘要

The thermal and statistical properties of hadronic matter under some extreme conditions are investigated using an exactly solvable canonical ensemble model. A unified model describing both the fragmentation of nuclei and the thermal properties of hadronic matter is developed. Simple expressions are obtained for quantities such as the hadronic equation of state, specific heat, compressibility, entropy, and excitation energy as a function of temperature and density. These expressions encompass the fermionic aspect of nucleons, such as degeneracy pressure and Fermi energy at low temperatures and the ideal gas laws at high temperatures and low density. Expressions are developed which connect these two extremes with behavior that resembles an ideal Bose gas with its associated Bose condensation. In the thermodynamic limit, an infinite cluster exists below a certain critical condition in a manner similar to the sudden appearance of the infinite cluster in percolation theory. The importance of multiplicity fluctuations is discussed and some recent data from the EOS collaboration on critical point behavior of nuclei can be accounted for using simple expressions obtained from the model.
机译:使用精确可解的典范整体模型研究了强子物质在某些极端条件下的热和统计性质。建立了描述原子核破裂和强子物质热性质的统一模型。对于量的简单表达式,如状态的强子方程,比热,可压缩性,熵和激发能随温度和密度的变化。这些表达式涵盖了核子的费米离子方面,例如低温下的简并压力和费米能量,以及高温低密度下的理想气体定律。开发了将这两个极端与行为类似的理想Bose气体及其相关的Bose冷凝现象联系起来的表达式。在热力学极限中,在某个临界条件下存在无限簇,其方式类似于渗流理论中无限簇的突然出现。讨论了多重波动的重要性,并且可以使用从模型获得的简单表达式来解释EOS合作提供的有关核临界点行为的一些最新数据。

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