Correlation Functions in $\omega$-Deformed N=6 Supergravity
A. Borghese, Y. Pang, C.N. Pope, E. Sezgin

TL;DR
This paper investigates the effects of an $$ deformation on N=6 supergravity, analyzing boundary conditions, supersymmetry preservation, and holographic correlators, revealing connections to ABJM models and higher-dimensional origins.
Contribution
It constructs and analyzes $$-deformed N=6 supergravity, identifying boundary conditions preserving supersymmetry and computing $$-dependent correlation functions.
Findings
Full N=6 supersymmetry preserved at $=0$ and $=/8
Boundary conditions limit preserved supersymmetry to N=3 for $ eq0$
Correlation functions involving gauge fields depend on $$ and match ABJM amplitudes
Abstract
Gauged N=8 supergravity in four dimensions is now known to admit a deformation characterized by a real parameter lying in the interval . We analyse the fluctuations about its anti-de Sitter vacuum, and show that the full N=8 supersymmetry can be maintained by the boundary conditions only for . For non-vanishing , and requiring that there be no propagating spin s>1 fields on the boundary, we show that N=3 is the maximum degree of supersymmetry that can be preserved by the boundary conditions. We then construct in detail the consistent truncation of the N=8 theory to give -deformed SO(6) gauged N=6 supergravity, again with in the range . We show that this theory admits fully N=6 supersymmetry-preserving boundary conditions not only for , but also for . These two theories are…
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