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Leading Giant graviton expansion of Schur correlators in large representations

High Energy Physics - Theory 2024-04-22 v1

Abstract

We consider 4d N=4\mathcal N=4 U(N)U(N) SYM and the leading giant graviton correction to the Schur defect 2-point functions of 12\frac{1}{2}-BPS Wilson lines in rank-kk symmetric and antisymmetric representations. We study in particular the large kk limit for the symmetric case and the regime 1kN1\ll k \ll N in the antisymmetric one. We present exact results for the correction in agreement with matrix model evaluation at finite N,kN,k. The Wilson lines in symmetric/antisymmetric representations admit a description in terms of D3k_{k} and D5k_{k} brane probes representing a collection of kk fundamental strings. In this picture, giant graviton corrections come from fluctuations of brane probes in presence of a wrapped D3 brane giant graviton. In particular, for the antisymmetric case, our leading correction matches the half-index of the 3d N=4\mathcal N=4 Maxwell theory living on the 3d disk which is a part of the giant graviton divided out by the D5k_{k} probe, as recently proposed in arXiv:2404.08302. For the symmetric case at large kk, we derive an explicit exact residue formula for the leading correction.

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Cite

@article{arxiv.2404.12690,
  title  = {Leading Giant graviton expansion of Schur correlators in large representations},
  author = {Matteo Beccaria},
  journal= {arXiv preprint arXiv:2404.12690},
  year   = {2024}
}

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26 pages