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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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Higher spin interactions: Cubic deformations on Minkowski and (Anti)de Sitter backgrounds

TL;DR: In this paper, general results about consistent deformations at first order (i.e., cubic) using the antifield formalism in Minkowski spacetime are gathered.
Journal ArticleDOI

Comments On Torsion and MacDowell-Mansouri gravity

TL;DR: In this article, the non-dynamical Holst term and the topological Nieh-Yan and Pontryagin classes were introduced to the MacDowell-Mansouri formulation of gravity.
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Noncommutative Electrodynamics from $SO(2,3)_\star$ Model of Noncommutative Gravity

TL;DR: In this paper, a model of non-commutative (NC) gravity was constructed by adding fermions and a U(1) gauge field to the standard NC model, and it was shown that first non-vanishing NC corrections are linear in the noncommutativity parameter.
Journal ArticleDOI

Dynamics of higher spin gauge fields in AdS d space of dimension d ≥ 5

TL;DR: In this article, the framelike formulation of the dynamics of massless gauge fields of arbitrary spin propagating in Minkowski and (anti-)de Sitter spaces of an arbitrary dimension is discussed.
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