On the Supersymmetry of Bianchi attractors in Gauged supergravity
Bidisha Chakrabarty, Karthik Inbasekar, Rickmoy Samanta

TL;DR
This paper constructs and analyzes supersymmetric Bianchi attractor solutions in gauged supergravity theories in four and five dimensions, identifying conditions for supersymmetry preservation and presenting new Bianchi geometries.
Contribution
It provides the first systematic construction of supersymmetric Bianchi attractors in gauged supergravity, including new Bianchi III solutions and conditions for supersymmetry.
Findings
Supersymmetric Bianchi attractors exist when fermionic shifts vanish.
Anisotropic $AdS_3\times\mathbb{R}^2$ in 5D is 1/2 BPS.
New Bianchi III geometries are constructed and related to known solutions.
Abstract
Bianchi attractors are near horizon geometries with homogeneous symmetries in the spatial directions. We construct supersymmetric Bianchi attractors in gauged supergravity. In we consider gauged supergravity coupled to vector and hypermultiplets. In we consider gauged supergravity coupled to vector multiplets with a generic gauging of symmetries of the scalar manifold and the gauging of the -symmetry. Analyzing the gaugino conditions we show that when the fermionic shifts do not vanish there are no supersymmetric Bianchi attractors. This is analogous to the known condition that for maximally supersymmetric solutions, all the fermionic shifts must vanish. When the central charge satisfies an extremization condition, some of the fermionic shifts vanish and supersymmetry requires that the symmetries of the scalar manifold do not be gauged.…
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