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On Monopole Bubbling Contributions to 't Hooft Loops

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arxiv 1903.00376 v1 pith:44655OAO submitted 2019-03-01 hep-th math-phmath.MP

On Monopole Bubbling Contributions to 't Hooft Loops

classification hep-th math-phmath.MP
keywords bubblingcontributionshooftbranecomputeindiceslineloop
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Monopole bubbling contributions to supersymmetric 't Hooft loops in 4d $\mathcal{N}=2$ theories are computed by SQM indices. As recently argued, those indices are hard to compute due to the presence of Coulomb vacua that are not captured by standard localization techniques. We propose an algorithmic method to compute the full bubbling contributions that circumvent this issue, by considering SQM with more matter fields and isolating the bubbling terms as residues in flavor fugacities. The enlarged SQMs are read from brane configurations realizing the bubbling sector of a given 't Hooft loop. We apply our technique to loop operators in $\mathcal{N}=2$ conformal SQCD theories. In addition we embed this discussion in the larger setup of a 5d-4d system interacting along a line, associated to the brane systems previously discussed. The bubbling terms arise from residues of specific instanton sectors of 5d line operators in this context.

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Cited by 2 Pith papers

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  1. Quantized Coulomb branch of 4d $\mathcal{N}=2$ $Sp(N)$ gauge theory and spherical DAHA of $(C_N^{\vee}, C_N)$-type

    hep-th 2025-03 unverdicted novelty 7.0

    Quantized Coulomb branch of 4d N=2 Sp(N) theory with given matter content matches spherical DAHA of (C_N^vee, C_N) type, proven for N=1 and conjectured for higher N with 't Hooft loop evidence.

  2. Line operator indices of S-fold theories

    hep-th 2026-07 conditional novelty 6.0

    Line-operator Schur indices for S-fold theories are matched to Wilson-'t Hooft indices in rank-2 N=4 SYM once giant graviton corrections are included, with new fivebrane-junction indices derived for k=3,4,6.