An action of N=8 self-dual supergravity in ultra-hyperbolic harmonic superspace
Sinisa Karnas, Sergei V. Ketov (ITP, University of Hannover)

TL;DR
This paper formulates N=8 self-dual supergravity in ultra-hyperbolic harmonic superspace, providing a covariant action and solving the constraints using a superfield prepotential, advancing the understanding of supersymmetric theories in (2+2) signature.
Contribution
It introduces a manifestly Lorentz-covariant harmonic superspace action for N=8 self-dual supergravity, reformulating constraints into a zero-curvature form and solving them via a superfield prepotential.
Findings
Derived a covariant supergravity action in harmonic superspace.
Solved supergravity constraints using a single superfield prepotential.
Maintained residual symmetries under superdiffeomorphisms and super-Lorentz rotations.
Abstract
The N-extended self-dual supergravity in the ultra-hyperbolic four-dimensional spacetime of kleinian signature (2+2) is given in the N-extended harmonic superspace. We reformulate the on-shell N-extended self-dual supergravity constraints of Siegel to a `zero-curvature' representation, and solve all of them but one in terms of a single superfield prepotential, by using a covariant Frobenius gauge in the Devchand-Ogievetsky approach. An off-shell superspace action, whose equation of motion yields the remaining constraint, is found. Our manifestly Lorentz-covariant action in harmonic superspace is very similar to the non-covariant Chern-Simons-type action, which was proposed earlier by Siegel in the light-cone N=8 superspace. Our action is also invariant under the residual superdiffeomorphisms and the residual local OSp(8|2) super-Lorentz rotations, which are left after imposing the…
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