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Supergravity in the Geometric Approach and its Hidden Graded Lie Algebra

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arxiv 2404.13987 v2 pith:LMMBPYFE submitted 2024-04-22 hep-th

classification hep-th
keywords approachsupergravityalgebracasedimensionsfirstformalismgeometric
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

In this contribution, we present the geometric approach to supergravity. In the first part, we discuss in some detail the peculiarities of the approach and apply the formalism to the case of pure supergravity in four space-time dimensions. In the second part, we extend the discussion to theories in higher dimensions, which include antisymmetric tensors of degree higher than one, focussing on the case of eleven dimensional space-time. Here, we report the formulation first introduced in 1981 by R. D'Auria and P. Fr\`e, corresponding to a generalization of a Chevalley-Eilenberg Lie algebra, together with some more recent results, pointing out the relation of the formalism with the mathematical framework of $L_\infty$ algebras.

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Cited by 1 Pith paper

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  1. Super-$\mathrm{Lie}_\infty$ T-Duality and M-Theory

    hep-th 2024-11 conditional novelty 6.0 of 10

    The M-algebra is shown to be the brane-charge completion of the fully T-doubled super-spacetime, with the Poincaré super 2-form of T-duality lifted to a Poincaré super 3-form.

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