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A NEW STATE OF HADRONIC MATTER AT HIGH DENSITY

机译:高密度铁质物质的新状态

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摘要

We propose in this article that if the chemical potential exceeds a critical value in dense hadronic medium, a first-order phase transition to a new state of matter with Lorentz symmetry spontaneously broken (in addition to the explicit breaking) takes place. As a consequence, light vector mesons get excited as ''almost'' Goldstone bosons. Since the light vector mesons dominantly couple to photons, the presence of these new vector mesons could lead to an enhancement in the dilepton production from dense medium at an invariant mass lower than the free-space vector-meson mass. We provide a low-energy quark model which demonstrates that the above scenario is a generic case for quark theories with a strong interaction in the vector channel. We discuss possible relevance of this phase to the phenomenon of the enhanced dilepton production at low invariant masses in relativistic heavy-ion collisions. (C) 1997 Elsevier Science B.V. [References: 34]
机译:我们在本文中提出,如果在致密强子介质中化学势超过临界值,则会发生自发破坏(除了显性破坏)的一阶相变到具有洛伦兹对称性的新物质状态。结果,光矢量介子作为“几乎”戈德斯通玻色子而兴奋。由于光矢量介子主要与光子耦合,因此这些新的矢量介子的存在可能导致密度比自由空间矢量介子质量低的不变质的致密介质中双链产生的增强。我们提供了一个低能夸克模型,该模型证明上述情况是夸克理论在矢量通道中具有强相互作用的一般情况。我们讨论了这一阶段与相对论重离子碰撞中低不变质量下增强的双链烯产生现象的可能相关性。 (C)1997 Elsevier Science B.V. [参考:34]

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