Steady electric currents in magnetized QCD and their use for the equation of state

IF 5.4 1区 物理与天体物理 Q1 Physics and Astronomy
B. B. Brandt, G. Endrődi, G. Markó, A. D. M. Valois
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引用次数: 0

Abstract

In this paper we study the emergence of steady electric currents in QCD as a response to a non-uniform magnetic background using lattice simulations with 2 + 1 quark flavors at the physical point, as well as leading-order chiral perturbation theory. Using these currents, we develop a novel method to determine the leading-order coefficient of the equation of state in a magnetic field expansion: the magnetic susceptibility of the QCD medium. We decompose the current expectation value into valence- and sea-quark contributions and demonstrate that the dominant contribution to the electric current is captured by the valence term alone, allowing for a comparably cheap determination of the susceptibility. Our continuum extrapolated lattice results for the equation of state confirm the findings of some of the existing studies in the literature, namely that the QCD medium behaves diamagnetically at low and paramagnetically at high temperatures.

磁化 QCD 中的稳定电流及其在状态方程中的应用
在本文中,我们利用物理点上 2 + 1 夸克味的晶格模拟以及前沿手性扰动理论,研究了 QCD 中稳定电流的出现作为对非均匀磁背景的响应。利用这些电流,我们开发了一种新方法来确定磁场扩展中状态方程的前导阶系数:QCD 介质的磁感应强度。我们将电流期望值分解为价量子和海夸克贡献,并证明仅价量子项就能捕捉到电流的主要贡献,从而以相当低的成本确定磁感应强度。我们对状态方程的连续体外推晶格结果证实了现有文献中的一些研究结果,即 QCD 介质在低温下表现为二磁性,而在高温下表现为顺磁性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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