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HHL correlators, orbit averaging and form factors

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arxiv 1404.4556 v2 pith:TSCU7ITN submitted 2014-04-17 hep-th

HHL correlators, orbit averaging and form factors

classification hep-th
keywords statesvolumecoefficientscouplingdiagonalfactorsfiniteform
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We argue that the conventional method to calculate the OPE coefficients in the strong coupling limit for heavy-heavy-light operators in the N=4 Super-Yang-Mills theory has to be modified by integrating the light vertex operator not only over a single string worldsheet but also over the moduli space of classical solutions corresponding to the heavy states. This reflects the fact that we are primarily interested in energy eigenstates and not coherent states. We tested our prescription for the BMN vacuum correlator, for folded strings on $S^5$ and for two-particle states. Our prescription for two-particle states with the dilaton leads to a volume dependence which matches exactly to the structure of finite volume diagonal formfactors. As the volume depence does not rely on the particular light operator we conjecture that symmetric OPE coefficients can be described for any coupling by finite volume diagonal form factors.

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Cited by 2 Pith papers

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    hep-th 2026-03 conditional novelty 6.0

    Holographic one-point functions for toroidal and cylindrical Wilson surfaces in AdS7/CFT6 are computed via uniform averaging over the dual M2-brane moduli space; they vanish in the OPE limit and at the origin, and are...