Consistent $\mathcal{N}=4$, $D=4$ truncation of type IIB supergravity on $\textrm{S}^{1} \times \textrm{S}^{5}
Fetching techniques from Generalised Geometry and Exceptional Field Theory, we develop a new method to identify consistent subsectors of four-dimensional gauged maximal supergravities that possess a (locally) geometric embedding in type IIB or 11D supergravity. We show that a subsector that is invar...
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Zusammenfassung: | Fetching techniques from Generalised Geometry and Exceptional Field Theory,
we develop a new method to identify consistent subsectors of four-dimensional
gauged maximal supergravities that possess a (locally) geometric embedding in
type IIB or 11D supergravity. We show that a subsector that is invariant under
a structure group $\textrm{G}_\textrm{S} \subset \textrm{E}_{7(7)}$ can define
a consistent truncation, even when $\textrm{G}_\textrm{S}$ is not part of the
symmetry of the gauged maximal supergravity. As an illustration of the method,
type IIB supergravity on $\textrm{S}^{1} \times \textrm{S}^{5}$ is shown to
admit a consistent truncation to pure $\mathcal{N}=4$, $D=4$ gauged
supergravity. Explicit uplift formulae are presented which provide a type IIB
alternative to the M-theory embedding constructed by Cvetic, Lu and Pope $25$
years ago. |
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DOI: | 10.48550/arxiv.2410.23149 |