Maximal D=5 trombone supergravity from M5-branes and SU(2)-flavoured N=1 class S operator spectra
Ritabrata Bhattacharya, Abhay Katyal, Oscar Varela
Abstract
We recently presented a new D=5 N=8 gauged supergravity involving the local trombone scaling symmetry. It arises by consistent truncation of M-theory on the internal space of the Maldacena-Núñez AdS5 solution dual to the N=2 four-dimensional superconformal field theory (SCFT) of class S associated to M5-branes wrapped on an unpunctured Riemann surface. Using exceptional generalised geometry/field theory, we extend that construction to show that the same D=5 N=8 supergravity also arises by consistent truncation of D=11 supergravity on the family of N=1 M5-brane-wrapped solutions of Bah-Beem-Bobev-Wecht, including the N=1 Maldacena-Núñez (MN1) configuration. Then, using recently derived mass matrices, we compute universal sectors of the Kaluza-Klein spectrum on the MN1 solution. In general, this universal spectrum is only locally defined, and we give a prescription for extracting globally defined subsectors thereof. This globally defined universal Kaluza-Klein spectrum is dual to a universal sector of the light operator spectrum of the SU(2)-flavoured N=1 class S SCFT dual to MN1.
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