Defect fusion and Casimir energy in higher dimensions

IF 5.4 1区 物理与天体物理 Q1 Physics and Astronomy Journal of High Energy Physics Pub Date : 2024-09-02 DOI:10.1007/jhep09(2024)006
Oleksandr Diatlyk, Himanshu Khanchandani, Fedor K. Popov, Yifan Wang
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Abstract

We study the operator algebra of extended conformal defects in more than two spacetime dimensions. Such algebra structure encodes the combined effect of multiple impurities on physical observables at long distances as well as the interactions among the impurities. These features are formalized by a fusion product which we define for a pair of defects, after isolating divergences that capture the effective potential between the defects, which generalizes the usual Casimir energy. We discuss general properties of the corresponding fusion algebra and contrast with the more familiar cases that involve topological defects. We also describe the relation to a different defect setup in the shape of a wedge. We provide explicit examples to illustrate these properties using line defects and interfaces in the Wilson-Fisher CFT and the Gross-Neveu(-Yukawa) CFT and determine the defect fusion data thereof.

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高维度的缺陷聚变和卡西米尔能
我们研究了超过两个时空维度的扩展共形缺陷的算子代数。这种代数结构编码了多个杂质对远距离物理观测值的综合影响以及杂质之间的相互作用。在分离出捕捉缺陷间有效势能的发散之后,我们为一对缺陷定义了融合积,从而将这些特征形式化,而这一融合积概括了通常的卡西米尔能。我们讨论了相应融合代数的一般性质,并与我们更熟悉的涉及拓扑缺陷的情况进行了对比。我们还描述了与不同的楔形缺陷设置的关系。我们提供了明确的例子,用威尔逊-费舍 CFT 和格罗斯-涅维乌(-汤川)CFT 中的线缺陷和界面来说明这些性质,并确定了其中的缺陷融合数据。
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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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