Exact Solutions with Noncommutative Symmetries in Einstein and Gauge Gravity
Sergiu I. Vacaru

TL;DR
This paper introduces new exact solutions in Einstein and gauge gravity exhibiting noncommutative symmetries, constructed via anholonomic frames, and explores their implications for black holes, wormholes, and noncommutative geometric structures.
Contribution
It presents novel classes of exact solutions with noncommutative symmetries in various gravity models, linking them to gauge theories and noncommutative geometry frameworks.
Findings
New classes of exact solutions with noncommutative symmetries in Einstein gravity.
Construction of black ellipsoid and wormhole solutions with complex metrics.
Analysis of noncommutative symmetries and their relation to gauge gravity models.
Abstract
We present new classes of exact solutions with noncommutative symmetries constructed in vacuum Einstein gravity (in general, with nonzero cosmological constant), five dimensional (5D) gravity and (anti) de Sitter gauge gravity. Such solutions are generated by anholonomic frame transforms and parametrized by generic off-diagonal metrics. For certain particular cases, the new classes of metrics have explicit limits with Killing symmetries but, in general, they may be characterized by certain anholonomic noncommutative matrix geometries. We argue that different classes of noncommutative symmetries can be induced by exact solutions of the field equations in 'commutative' gravity modeled by a corresponding moving real and complex frame geometry. We analyze two classes of black ellipsoid solutions (in the vacuum case and with cosmological constant) in 4D gravity and construct the analytic…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
