Duality in Supergravity Theories
A. Candiello, K. Lechner

TL;DR
This paper develops a unified superspace formulation for dual supergravity theories in ten and eleven dimensions, revealing new insights into their geometric structure, anomalies, and duality properties.
Contribution
It introduces a super-geometrical framework for dual supergravity formulations, clarifies the algebraic analogy with super Yang--Mills, and analyzes duality and anomalies in these theories.
Findings
Unified superspace formulation for D=10 supergravity duals.
Manifest algebraic analogy between supergravity and super Yang--Mills.
Duality in D=11 supergravity is kinematically valid but dynamically broken.
Abstract
We present a unified treatment in superspace of the two dual formulations of , {\it pure} supergravity based on a strictly super-geometrical framework: the only fundamental objects are the super Riemann curvature and torsion, and the related Bianchi identities are sufficient to set the theory on shell; there is no need to introduce, from the beginning, closed three- or seven-superforms. This formulation extends also to {\it non minimal} models. Moreover, in this framework the algebraic analogy between pure super Yang--Mills theories and pure supergravity in is manifest. As an additional outcome in the present formulation the supersymmetric partner of the ABBJ-Lorentz anomaly in pure supergravity can be computed in complete analogy to the ABBJ-gauge anomaly in supersymmetric Yang--Mills theories in ten dimensions. In the same framework we attack the issue of…
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