Off-Diagonal Deformations of Kerr Metrics and Black Ellipsoids in Heterotic Supergravity
Sergiu I. Vacaru, Klee Irwin

TL;DR
This paper develops geometric methods to construct exact off-diagonal solutions in heterotic supergravity, including black ellipsoids and Kerr-like metrics, incorporating string corrections and internal space structures.
Contribution
It introduces a framework for generating exact off-diagonal solutions with string corrections in heterotic supergravity, extending classical black hole solutions to higher dimensions and non-trivial geometries.
Findings
Constructed exact solutions with off-diagonal metrics and nonlinear connections.
Reproduced Kerr and black hole solutions with string corrections.
Analyzed configurations with internal almost-Kähler manifolds and gauge instantons.
Abstract
Geometric methods for constructing exact solutions of motion equations with first order corrections to the heterotic supergravity action implying a non-trivial Yang-Mills sector and six dimensional, 6-d, almost-K\"ahler internal spaces are studied. In 10-d spacetimes, general parametrizations for generic off-diagonal metrics, nonlinear and linear connections and matter sources, when the equations of motion decouple in very general forms are considered. This allows us to construct a variety of exact solutions when the coefficients of fundamental geometric/physical objects depend on all higher dimensional spacetime coordinates via corresponding classes of generating and integration functions, generalized effective sources and integration constants. Such generalized solutions are determined by generic off-diagonal metrics and nonlinear and/or linear connections. In…
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