论文标题

非零手性失衡的手性扰动理论

Chiral perturbation theory for nonzero chiral imbalance

论文作者

Espriu, Domènec, Nicola, Angel Gómez, Vioque-Rodríguez, Andrea

论文摘要

我们构建了最普遍的低能有效拉格朗日,包括局部奇偶校验,违反了轴向化学势或手性失衡$μ_5$参数,最高$ {\ cal o}(p^4)$订购了两种光味的手性膨胀。为此,我们在手性扰动理论框架中工作,其中仅包含伪NGB字段,按照外部源方法。 $ \ cal {o}(p^2)$ lagrangian仅通过恒定术语进行修改,而$ \ cal {o}(p^4)$一包含与$μ_5^2 $成比例的新术语,与新的低势常量(LEC)(LEC),这些术语已重新纳入并与特定的可测度套件相关。特别是,我们分析了与真空能量密度相关的裂缝分散关系的校正,即光夸克冷凝物,手性和拓扑敏感性以及手性电荷密度,并在可能的情况下提供了新LEC的数值确定。特别是,我们探讨了手性恢复温度$ t_c $的依赖性,并探索了$μ_5$。 $ t_c(μ_5)$增加与我们适合基于CHPT的表达式的晶格数据一致。尽管晶格的不确定性仍然很大并转化为新的LEC确定,但对这些观察物的一致的物理描述是从我们目前的工作中出现的,提供了一个理论上与模型无关的框架,用于进一步研究物理系统,在这种物理系统中,奇偶校验可能是相关的,例如重型离子碰撞。

We construct the most general low-energy effective lagrangian including local parity violating terms parametrized by an axial chemical potential or chiral imbalance $μ_5$, up to ${\cal O}(p^4)$ order in the chiral expansion for two light flavours. For that purpose, we work within the Chiral Perturbation Theory framework where only pseudo-NGB fields are included, following the external source method. The $\cal{O}(p^2)$ lagrangian is only modified by constant terms, while the $\cal{O}(p^4)$ one includes new terms proportional to $μ_5^2$ and new low-energy constants (LEC), which are renormalized and related to particular observables. In particular, we analyze the corrections to the pion dispersion relation and observables related to the vacuum energy density, namely the light quark condensate, the chiral and topological susceptibilities and the chiral charge density, providing numerical determinations of the new LEC when possible. In particular, we explore the dependence of the chiral restoration temperature $T_c$ with $μ_5$. An increasing $T_c(μ_5)$ is consistent with our fits to lattice data of the ChPT-based expressions. Although lattice uncertainties are still large and translate into the new LEC determination, a consistent physical description of those observables emerges from our present work, providing a theoretically robust model-independent framework for further study of physical systems where parity-breaking effects may be relevant, such as heavy-ion collisions.

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