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The spacetime of double field theory: Review, remarks, and outlook

Olaf Hohm, +2 more
- 01 Oct 2013 - 
- Vol. 61, Iss: 10, pp 926-966
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TLDR
In this paper, the authors review double field theory with emphasis on the doubled spacetime and its generalized coordinate transformations, which unify diffeomorphisms and b-field gauge transformations.
Abstract
We review double field theory (DFT) with emphasis on the doubled spacetime and its generalized coordinate transformations, which unify diffeomorphisms and b-field gauge transformations. We illustrate how the composition of generalized coordinate transformations fails to associate. Moreover, in dimensional reduction, the O(d,d) T-duality transformations of fields can be obtained as generalized diffeomorphisms. Restricted to a half-dimensional subspace, DFT includes ‘generalized geometry’, but is more general in that local patches of the doubled space may be glued together with generalized coordinate transformations. Indeed, we show that for certain T-fold backgrounds with nongeometric fluxes, there are generalized coordinate transformations that induce, as gauge symmetries of DFT, the requisite O(d,d;Z) monodromy transformations. Finally we review recent results on the α ′ extension of DFT which, reduced to the half-dimensional subspace, yields intriguing modifications of the basic structures of generalized geometry.

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Exceptional Field Theory I: $E_{6(6)}$ covariant Form of M-Theory and Type IIB

TL;DR: In this article, the Kaluza-Klein vector field acts as a gauge field for the E-bracket, requiring the presence of 2-forms akin to the tensor hierarchy of gauged supergravity.
Journal ArticleDOI

Exceptional field theory. III. E8(8)

Olaf Hohm, +1 more
- 12 Jun 2014 - 
TL;DR: In this paper, the authors developed exceptional field theory for E8p8q, defined on a (3+248)-dimensional gener- alized spacetime with extended coordinates in the adjoint representation of E8 p8q. The theory consistently comprises components of the dual graviton encoded in the 248 bein.
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Exceptional field theory. II. E$_{7(7)}$

Olaf Hohm, +1 more
- 16 Dec 2013 - 
TL;DR: In this paper, the exceptional field theory for the group E 7 (7 ), based on a ( 4 + 56 ) -dimensional spacetime subject to a covariant section condition, is introduced.
Journal ArticleDOI

Consistent Kaluza-Klein truncations via exceptional field theory

TL;DR: In this article, the generalized Scherk-Schwarz reduction ansatz for the full supersymmetric exceptional eld theory in terms of group valued twist matrices subject to consistency equations is presented.
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Entanglement, holography and causal diamonds

TL;DR: In this article, the degrees of freedom in a d-dimensional CFT can be reorganized in an insightful way by studying observables on the moduli space of causal diamonds (or equivalently, the space of pairs of timelike separated points).
References
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Journal ArticleDOI

On the geometry of double field theory

TL;DR: In this article, the authors define metric algebroids, which are vector bundles with a bracket of cross sections that has the same metric compatibility property as a Courant bracket, and show that a double field gives rise to two canonical connections, whose scalar curvatures can be integrated to obtain actions.
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Gauged supergravities and non-geometric Q/R-fluxes from asymmetric orbifold CFT's

TL;DR: In this article, a general procedure for deriving the gauge algebra of the effective gauged supergravity using the exact CFT description at the orbifold point is given. But the results are restricted to the case of symmetric and asymmetric Z4xZ2 orbifolds.
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Superdualities, brane tensions and massive IIA/IIB duality

TL;DR: In this paper, it was shown that the gauge symmetry superalgebra implies certain non-trivial relations among the various p-brane tensions, which can straightforwardly be read off from the super algebra commutation relations.
Journal ArticleDOI

Invariances and equations of motion in double field theory

TL;DR: In this paper, the full set of equations of motion in double field theory and their symmetry and gauge transformation properties were investigated and a Ricci-like tensor, its associated Bianchi identities, was obtained.
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Non-gravitational exceptional supermultiplets

TL;DR: In this paper, the authors examined non-gravitational minimal supermultiplets which are based on the tensor gauge fields appearing as matter fields in exceptional generalised geometry and provided multiplets with the possibility of coupling to a generalised exceptional geometry.
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