旋转等离子体中的非均匀约束-定义相

M. Chernodub
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引用次数: 33

摘要

我们讨论了旋转对规范理论的约束性质的影响,重点是紧致电动力学在两个空间维度作为一个解析可处理的模型。我们表明,在有限温度下,旋转导致从离旋转轴一定距离开始的定义转变。一个均匀旋转的约束体系除了具有通常的约束相和约束相外,还具有一个混合的非均匀相,其中包含空间分离的约束区和约束区。相图因此有两个不同的定义温度。通过足够快的旋转可以使第一定义温度任意低,而第二定义温度在很大程度上不受旋转的影响。我们的研究结果对QCD的相图有重要意义。我们指出,当强子化从旋转等离子体的核心而不是边界开始时,均匀旋转的夸克-胶子等离子体应该经历逆强子化效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhomogeneous confining-deconfining phases in rotating plasmas
We discuss the effects of rotation on confining properties of gauge theories focusing on compact electrodynamics in two spatial dimensions as an analytically tractable model. We show that at finite temperature, the rotation leads to a deconfining transition starting from a certain distance from the rotation axis. A uniformly rotating confining system possesses, in addition to the usual confinement and deconfinement phases, a mixed inhomogeneous phase which hosts spatially separated confinement and deconfinement regions. The phase diagram thus has two different deconfining temperatures. The first deconfining temperature can be made arbitrarily low by sufficiently rapid rotation while the second deconfining temperature is largely unaffected by the rotation. Implications of our results for the phase diagram of QCD are presented. We point out that uniformly rotating quark-gluon plasma should therefore experience an inverse hadronization effect when the hadronization starts from the core of the rotating plasma rather than from its boundary.
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