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Absorption of closed strings by giant gravitons

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arxiv 1908.03553 v2 pith:PEAV5I5G submitted 2019-08-09 hep-th

Absorption of closed strings by giant gravitons

classification hep-th
keywords giantschurabsorptionclosedcorrelationdescriptiondualgraviton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A new approach to the computation of correlation functions involving two determinant operators as well as one non-protected single trace operator has recently been developed by Jiang, Komatsu and Vescovi. This correlation function provides the holographic description of the absorption of a closed string by a giant graviton. The analysis has a natural interpretation in the framework of group representation theory, which admits a generalization to general Schur polynomials and restricted Schur polynomials. This generalizes the holographic description to any giant or dual giant gravitons which carry more than one angular momentum on the sphere. For a restricted Schur polynomial labeled by a column with $N$ boxes (dual to a maximal giant graviton) we find evidence in favor of integrability.

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Cited by 2 Pith papers

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    In planar N=4 SYM, the large-spin OPE coefficient for two maximal giant gravitons and a twist-two operator scales as S^{d(g)}, with d(g) computed at arbitrary coupling.

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    Proposes complex matrix models for BPS correlators in N=4 SYM, relating eigenvalue distributions to LLM droplet shapes and enabling computations of one-point functions and three-point correlators via reductions to kno...