Cosmological backgrounds of superstring theory and Solvable Algebras: Oxidation and Branes
P. Fre', V. Gili, F. Gargiulo, A. Sorin, K. Rulik, M. Trigiante

TL;DR
This paper introduces a systematic algebraic method to construct and classify time-dependent, homogeneous supergravity solutions relevant for cosmological models, linking algebraic structures to physical phenomena like bouncing universes and S-branes.
Contribution
It develops a new algebraic framework using solvable Lie algebras to systematically solve supergravity equations and classify solutions via subalgebras of E8(8), enabling explicit cosmological background constructions.
Findings
Classified D=3 solutions by non-compact subalgebras of E8(8)
Provided explicit solutions based on the G=A2 subalgebra
Connected solutions to bouncing cosmologies and S-branes
Abstract
We develop a systematic algorithm to construct, classify and study exact solutions of type II A/B supergravity which are time--dependent and homogeneous and hence represent candidate cosmological backgrounds. Using the formalism of solvable Lie algebras to represent the geometry of non--compact coset manifolds U/H we are able to reduce the supergravity field equations to the geodesic equations in U/H and rephrase these latter in a completely algebraic setup by means of the so called Nomizu operator representation of covariant derivatives in solvable group manifolds. In this way a systematic method of integration of supergravity equations is provided. We show how the possible D=3 solutions are classified by non--compact subalgebras G of E8(8) and their ten--dimensional physical interpretation (oxidation) depends on the classification of the different embeddings of G inside E8(8). We give…
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