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DECONFINEMENT TRANSITION IN A ONE-DIMENSIONAL MODEL AT FINITE TEMPERATURE

机译:有限温度下一维模型中的超界过渡

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摘要

We present a model for quark matter with a density-dependent quark-quark (confining) potential, which allows one to describe a deconfinement phase transition as the system evolves from a low-density assembly of bound structures to a high-density free Fermi gas of quarks. A proper account of the many-body correlations induced by the medium is crucial in order to disentangle this behaviour, which does not uniquely stem from the naive density dependence of the interaction. We focus here on the effects of finite (non-zero) temperatures on the dynamical behaviour of the system. In particular we investigate the ground-state energy per particle and the pair correlation function, from which one can extract the relevant information about the quarks being confined or not; the temperature dependence of the transition density is also derived. [References: 13]
机译:我们提出了一种具有依赖于密度的夸克-夸克(约束)势的夸克物质模型,该模型可以描述随着系统从低密度组装结构演化为高密度自由费米气体而发生的非约束相变。夸克。为了弄清这种行为,正确地考虑由介质引起的多体相关性至关重要,而这种行为并非唯一地源自相互作用的天真密度依赖性。在这里,我们将重点放在有限(非零)温度对系统动力学行为的影响上。特别是,我们研究了每个粒子的基态能量和对相关函数,从中可以提取有关被约束或不约束的夸克的相关信息。还得出了转变密度的温度依赖性。 [参考:13]

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