磁场中QCD畴壁Skyrmion相:规范场动力学

IF 5.4 1区 物理与天体物理 Q1 Physics and Astronomy
Yuki Amari, Minoru Eto, Muneto Nitta
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引用次数: 0

摘要

在有限重子密度下,在强磁场条件下,QCD的基态是由一系列孤子组成的非均匀态,称为手性孤子晶格(CSL)。然而,在具有更高密度和/或磁场的区域,它被所谓的域壁Skyrmion (DWSk)阶段所取代,其中Skyrmions是在CSL之上创建的。这是先前在Bogomol 'nyi-Prasad-Sommerfield (BPS)近似中提出的,它忽略了规范场动力学,并通过通量量化条件考虑了其影响。在本文中,考虑了规范场的动力学,我们证明了CSL和DWSk在BPS近似之外的相边界与BPS近似中得到的相边界是相同的。我们还发现,由于手性异常,畴壁Skyrmions带电荷1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Domain-wall Skyrmion phase of QCD in magnetic field: gauge field dynamics

The ground state of QCD in sufficiently strong magnetic field at finite baryon density is an inhomogeneous state consisting of an array of solitons, called the chiral soliton lattice (CSL). It is, however, replaced in a region with higher density and/or magnetic field by the so-called domain-wall Skyrmion (DWSk) phase where Skyrmions are created on top of the CSL. This was previously proposed within the Bogomol’nyi-Prasad-Sommerfield (BPS) approximation neglecting a gauge field dynamics and taking into account its effect by a flux quantization condition. In this paper, by taking into account dynamics of the gauge field, we show that the phase boundary between the CSL and DWSk phases beyond the BPS approximation is identical to the one obtained in the BPS approximation. We also find that domain-wall Skyrmions are electrically charged with the charge one as a result of the chiral anomaly.

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来源期刊
Journal of High Energy Physics
Journal of High Energy Physics 物理-物理:粒子与场物理
CiteScore
10.30
自引率
46.30%
发文量
2107
审稿时长
1.5 months
期刊介绍: The aim of the Journal of High Energy Physics (JHEP) is to ensure fast and efficient online publication tools to the scientific community, while keeping that community in charge of every aspect of the peer-review and publication process in order to ensure the highest quality standards in the journal. Consequently, the Advisory and Editorial Boards, composed of distinguished, active scientists in the field, jointly establish with the Scientific Director the journal''s scientific policy and ensure the scientific quality of accepted articles. JHEP presently encompasses the following areas of theoretical and experimental physics: Collider Physics Underground and Large Array Physics Quantum Field Theory Gauge Field Theories Symmetries String and Brane Theory General Relativity and Gravitation Supersymmetry Mathematical Methods of Physics Mostly Solvable Models Astroparticles Statistical Field Theories Mostly Weak Interactions Mostly Strong Interactions Quantum Field Theory (phenomenology) Strings and Branes Phenomenological Aspects of Supersymmetry Mostly Strong Interactions (phenomenology).
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