论文标题

非热力学的热力学特性 - jona-lasinio模型

Thermodynamic properties of non-Hermitian Nambu--Jona-Lasinio models

论文作者

Felski, Alexander, Beygi, Alireza, Klevansky, S. P.

论文摘要

我们通过检查双线性扩展对$ 3+1 $ dimensional $ su(2)$ - 对称的Nambu-Jona-lasinio(NJL)模型,以有限温度和化学势。该系统通过抗$ PT $ -SMMETRIC PSEUDSCALAR双线性$ \barψγ_5ψ$和$ pt $ -smmetric pseudovector birinear $ib_ν\,\barψγ_5γ^νψ$,带有coupling $ g $。除了在有限温度和化学电位下动态费质量产生的可能性之外,我们的发现在手性相变的位置和临界终点的位置上建立了依赖模型的变化。对于以前的情况,对于$ g $,对于$ g $,在后一种情况下,对于灯泡和跨空中域,$ g $和$ | b_0 $均可调节。此外,与标准NJL模型相比,夸克数,熵,压力和能量密度的行为分别表明了潜在的费物或防腐剂过量,这分别是由于伪内科和伪驱动器扩展而导致的。在这两种情况下,都发现了具有负相互作用度量的区域$ i =ε-3p $。例如,在中子星形物理学的背景下,强烈相互作用的费米昂系统中这种行为的未来迹象可能表明存在非热贡献。这些趋势提供了产生非炎性重子不对称性的好奇潜在机制的首先指示。此外,这项研究中描述的形式主义预计将更普遍地应用于具有四个特色相互作用的其他哈密顿量,因此非富有双线性的效果可能是通用的。

We investigate the impact of non-Hermiticity on the thermodynamic properties of interacting fermions by examining bilinear extensions to the $3+1$ dimensional $SU(2)$-symmetric Nambu--Jona-Lasinio (NJL) model of quantum chromodynamics at finite temperature and chemical potential. The system is modified through the anti-$PT$-symmetric pseudoscalar bilinear $\barψγ_5 ψ$ and the $PT$-symmetric pseudovector bilinear $iB_ν\,\barψγ_5γ^νψ$, introduced with a coupling $g$. Beyond the possibility of dynamical fermion mass generation at finite temperature and chemical potential, our findings establish model-dependent changes in the position of the chiral phase transition and the critical end-point. These are tunable with respect to $g$ in the former case, and both $g$ and $|B|/B_0$ in the latter case, for both lightlike and spacelike fields. Moreover, the behavior of the quark number, entropy, pressure, and energy densities signal a potential fermion or antifermion excess compared to the standard NJL model, due to the pseudoscalar and pseudovector extension respectively. In both cases regions with negative interaction measure $I = ε-3p$ are found. Future indications of such behaviors in strongly interacting fermion systems, for example in the context of neutron star physics, may point toward the presence of non-Hermitian contributions. These trends provide a first indication of curious potential mechanisms for producing non-Hermitian baryon asymmetry. In addition, the formalism described in this study is expected to apply more generally to other Hamiltonians with four-fermion interactions and thus the effects of the non-Hermitian bilinears are likely to be generic.

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