Monodromy transform and the integral equation method for solving the string gravity and supergravity equations in four and higher dimensions
G. A. Alekseev

TL;DR
This paper introduces a systematic monodromy transform and integral equation method for solving integrable reductions of string gravity and supergravity equations in higher dimensions, enabling explicit solutions for certain classes of monodromy data.
Contribution
It develops a unified spectral problem approach and integral equations to solve string gravity equations, extending to higher dimensions and other gravity models.
Findings
Explicit solutions for rational and matched monodromy data
Unique solutions for direct and inverse monodromy problems
Reduction to other gravity models like 5D supergravity
Abstract
The monodromy transform and corresponding integral equation method described here give rise to a general systematic approach for solving integrable reductions of field equations for gravity coupled bosonic dynamics in string gravity and supergravity in four and higher dimensions. For different types of fields in space-times of dimensions with commuting isometries -- stationary fields with spatial symmetries, interacting waves or partially inhomogeneous cosmological models, the string gravity equations govern the dynamics of interacting gravitational, dilaton, antisymmetric tensor and any number of Abelian vector gauge fields (all depending only on two coordinates). The equivalent spectral problem constructed earlier allows to parameterize the infinite-dimensional space of local solutions of these equations by two pairs of \cal{arbitrary} coordinate-independent…
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