论文标题
冷致密的物质具有现象学介质效应:夸克质量密度依赖性模型的自洽配方
Cold dense quark matter with phenomenological medium effects: a self-consistent formulation of the quark-mass density-dependent model
论文作者
论文摘要
我们重新审视夸克质量密度依赖性模型 - 在高密度低温方向上,Quark物质的现象学方程式 - 并表明,如果模型在规范的集合中以大型典型的典范形式提出,则可以解决数十年来困扰该模型的热力学不一致。在新的公式中,每个重子的能量的最小值发生在零压力下,并验证了Euler的关系。采用典型的质量形式,我们首先详细分析了一个具有一个粒子物种的简单模型。我们表明,由于夸克质量的密度依赖性,产生夸克限制的``袋子''术语自然出现在压力(而不是能量密度)中。此外,在其他具有夸克排斥相互作用的模型中,化学势会获得一个新术语。然后,我们将形式主义扩展到在弱相互作用下平衡的均衡中性三种夸克物质的天体现实案例,重点是两种不同的质量公式:一种依赖性的风味和一种风味盲。对于这两个模型,我们得出状态方程,并分析其行为的多种参数选择。我们系统地分析了参数空间,并确定与自结合的2味和3型夸克物质,混合物质和因果行为相对应的区域。
We revisit the quark-mass density-dependent model -- a phenomenological equation of state for deconfined quark matter in the high-density low-temperature regime -- and show that thermodynamic inconsistencies that have plagued the model for decades, can be solved if the model is formulated in the canonical ensemble instead of the grand canonical one. Within the new formulation, the minimum of the energy per baryon occurs at zero pressure, and the Euler's relation is verified. Adopting a typical mass-formula, we first analyze in detail a simple model with one particle species. We show that a ``bag'' term that produces quark confinement naturally appears in the pressure (and not in the energy density) due to density dependence of the quark masses. Additionally, the chemical potential gains a new term as in other models with quark repulsive interactions. Then, we extend the formalism to the astrophysically realistic case of charge-neutral three-flavor quark matter in equilibrium under weak interactions, focusing on two different mass formulae: a flavor dependent and a flavor blind one. For these two models, we derive the equation of state and analyze its behavior for several parameter choices. We systematically analyze the parameter space and identify the regions corresponding to self-bound 2-flavor and 3-flavor quark matter, hybrid matter and causal behavior.