NJL模型中不均匀手性相的竞争和双味色超导性

Phillip Lakaschus, M. Buballa, D. Rischke
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引用次数: 7

摘要

我们在手性极限下研究了双味Nambu—Jona-Lasinio (NJL)模型的相结构,扩展了之前关于非均匀手性相和双味彩色超导(2SC)相竞争的研究[1,2]。在此基础上,找到了在特定的不均匀手性凝聚体即所谓的手性密度波(CDW)和均匀的2SC凝聚体存在下准粒子激发的色散关系的解析表达式。在这项工作中,我们展示了如何确定手性凝聚物在均匀的2SC凝聚物存在下的任意调制的色散关系,如果色散关系是已知的,在没有彩色超导的情况下。在我们的计算中,我们使用了两种不同的Ans来描述非均匀手性凝聚体,CDW和实扭结晶体(RKC)。根据双夸克耦合的值,我们找到了相图中不均匀手性凝聚物和2SC凝聚物共存的区域,证实了Refs的结果。[1,2]。减少双夸克耦合有利于非均匀相而不是共存相。另一方面,增加双夸克耦合导致2SC相变大,而不均匀手性相和共存相变小。与先前的研究一致,RKC Ansatz在能量上优于CDW Ansatz。两种方法的相图性质相似,但RKC Ansatz的共存相较小。
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Competition of inhomogeneous chiral phases and two-flavor color superconductivity in the NJL model
We study the phase structure of the two-flavor Nambu--Jona-Lasinio (NJL) model in the chiral limit, extending a previous study of the competition of an inhomogeneous chiral phase and a two-flavor color-superconducting (2SC) phase [1, 2]. There, an analytic expression for the dispersion relations for quasiparticle excitations in the presence of both a particular inhomogeneous chiral condensate, the so-called chiral density wave (CDW), and a homogeneous 2SC condensate was found. In this work we show how to determine the dispersion relations for arbitrary modulations of the chiral condensate in the presence of a homogeneous 2SC condensate, if the dispersion relations in the absence of color superconductivity are known. In our calculations, we employ two different Ans\"atze for the inhomogeneous chiral condensate, the CDW as well as the real-kink crystal (RKC). Depending on the value of the diquark coupling we find a region of the phase diagram where the inhomogeneous chiral and the 2SC condensates coexist, confirming results of Refs. [1, 2]. Decreasing the diquark coupling favors the inhomogeneous phase over the coexistence phase. On the other hand, increasing the diquark coupling leads to a larger 2SC phase, while the inhomogeneous chiral and the coexistence phases become smaller. In agreement with previous studies the RKC Ansatz is energetically preferred over the CDW Ansatz. Both Ans\"atze lead to a qualitatively similar phase diagram, however the coexistence phase is smaller for the RKC Ansatz.
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