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On BPS Strings in ${\mathcal N}=4$ Yang-Mills Theory

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arxiv 2008.00891 v2 pith:EIXRI7QM submitted 2020-08-03 hep-th

classification hep-th
keywords stringsconfigurationscorrespondencedefectsfracglobalmathcaltheory
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abstract

We study singular time-dependent $\frac{1}{8}$-BPS configurations in the abelian sector of ${{\mathcal N}= 4}$ supersymmetric Yang-Mills theory that represent BPS string-like defects in ${{\mathbb R}\times S^3}$ spacetime. Such BPS strings can be described as intersections of the zeros of holomorphic functions in two complex variables with a 3-sphere. We argue that these BPS strings map to $\frac{1}{8}$-BPS surface operators under the state-operator correspondence of the CFT. We show that the string defects are holographically dual to noncompact probe D3-branes in global $AdS_5\times S^5$ that share supersymmetries with a class of dual-giant gravitons. For simple configurations, we demonstrate how to define a good variational problem and propose a regularization scheme that leads to finite energy and global charges on both sides of the holographic correspondence.

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  1. Linking defects via AdS/CFT holography

    hep-th 2026-07 reject novelty 5.0 of 10

    A hanging D5/anti-D5 pair in a deformed AdS5 x S5 background is proposed as the topological defect that measures the U(1) charge of determinant operators.

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