Holographic three-point correlators in the Schrodinger/dipole CFT correspondence
arXiv:1806.08181 · doi:10.1007/JHEP09(2018)026
Abstract
We calculate, for the first time, three-point correlation functions involving "heavy" operators in the Schrodinger/null-dipole CFT correspondence at strong coupling. In particular, we focus on the three-point functions of the dilaton modes and two "heavy" operators. The heavy states are dual to the single spin and dyonic magnon, the single spin and dyonic spike solutions or to two novel string solutions which do not have an undeformed counterpart. Our results provide the leading term of the correlators in the large expansion and are in perfect agreement with the form of the correlator dictated by non-relativistic conformal invariance. We also specify the scaling function which can not be fixed by using conformal invariance.
26 pages, 1 figure
References in corpus (11)
- On three-point correlation functions in the gauge/gravity duality
- Structure Constants and Integrable Bootstrap in Planar N=4 SYM Theory
- Correlation Functions in Non-Relativistic Holography
- On semiclassical computation of 3-point functions of closed string vertex operators in AdS_5 x S^5
- HHL correlators, orbit averaging and form factors
- Correlation functions in the non-relativistic AdS/CFT correspondence
- Geometry of Schroedinger Space-Times, Global Coordinates, and Harmonic Trapping
- Twisted Bethe equations from a twisted S-matrix
- Operator Mixing and the AdS/CFT correspondence
- Semiclassical spectrum for BMN string in
- Giant magnons and spiky strings in the Schrodinger/dipole-deformed CFT correspondence
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