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Journal ArticleDOI

Unified geometric theory of gravity and supergravity

S. W. MacDowell, +1 more
- 04 Apr 1977 - 
- Vol. 38, Iss: 14, pp 739-742
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TLDR
In this article, a unified geometric formulation of gravitation and supergravity is presented, which is constructed out of the components of the curvature tensor for bundle spaces with four-dimensional Lorentz base manifold and structure groups Sp(4) for gravity and OSp(1, 4) for supergravity.
Abstract
A unified geometric formulation of gravitation and supergravity is presented. The action for these theories is constructed out of the components of the curvature tensor for bundle spaces with four-dimensional Lorentz base manifold and structure groups Sp(4) for gravity and OSp(1,4) for supergravity. The requirement of invariance under reflections, local Lorentz transformations, and general coordinate transformations uniquely determines the action and ensures the existence of local supersymmetry in supergravity.

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N=1 supergravity and Maxwell superalgebras

TL;DR: In this paper, the authors presented the construction of the D = 4 supergravity action from the minimal Maxwell superalgebra sℳ4 by applying the abelian semigroup expansion procedure.
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Lagrangian formulation for free mixed-symmetry bosonic gauge fields in (A)dSd

TL;DR: In this article, the Covariant Lagrangian formulation for free bosonic massless fields of arbitrary mixed-symmetry type in (A)dSd space-time is presented.
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Gravity as the square of Yang-Mills?

TL;DR: In this paper, the symmetries of the covariant fields of (super)gravity theories were derived from the product of two distinct Yang-Mills theories, particularly in the context of scattering amplitudes.
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Chiral higher spin theories and self-duality

TL;DR: In this article, the chiral higher spin equations of motion were reformulated as the self-dual Yang-Mills equations with the associated gauge algebras instead of the usual colour gauge algebra.
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Gauge fields in (A)dS(d) within the unfolded approach: algebraic aspects

TL;DR: In this article, the generalized connections of the symmetry algebra provide an effective geometric and algebraic framework for all types of gauge fields in (A)dS petertodd d fixme, both for massless and partially-massless.
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