Nonassociative Ricci flows, star product and R-flux deformed black holes, and swampland conjectures

We extend to a theory of nonassociative geometric flows a string-inspired model of nonassociative gravity determined by star product and R-flux deformations. The nonassociative Ricci tensor and curvature scalar defined by (non) symmetric metric structures and generalized (non) linear connections are...

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Veröffentlicht in:arXiv.org 2023-05
Hauptverfasser: Bubuianu, Laurenţiu, Vacaru, Sergiu I, Elşen Veli Veliev
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description We extend to a theory of nonassociative geometric flows a string-inspired model of nonassociative gravity determined by star product and R-flux deformations. The nonassociative Ricci tensor and curvature scalar defined by (non) symmetric metric structures and generalized (non) linear connections are used for defining nonassociative versions of Grigori Perelman F- and W-functionals for Ricci flows and computing associated thermodynamic variables. We develop and apply the anholonomic frame and connection deformation method, AFCDM, which allows us to construct exact and parametric solutions describing nonassociative geometric flow evolution scenarios and modified Ricci soliton configurations with quasi-stationary generic off-diagonal metrics. There are provided explicit examples of solutions modelling geometric and statistical thermodynamic evolution on a temperature-like parameter of modified black hole configurations encoding nonassociative star-product and R-flux deformation data. Further perspectives of the paper are motivated by nonassociative off-diagonal geometric flow extensions of the swampland program, related conjectures and claims on geometric and physical properties of new classes of quasi-stationary Ricci flow and black hole solutions.
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subjects Configurations
Deformation
Evolution
Parameter modification
Physical properties
Physics - General Physics
Solitary waves
Tensors
Thermodynamics
title Nonassociative Ricci flows, star product and R-flux deformed black holes, and swampland conjectures
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