Minimally deformed wormholes inspired by noncommutative geometry
Abstract
In this article, new wormhole solutions in the framework of General Relativity are presented. Taking advantage of gravitational decoupling by means of minimal geometric deformation approach and, the so-called noncommutative geometry Gaussian and Lorentzian density profiles, the seminal Morris-Thorne space-time is minimally deformed providing new asymptotically wormhole solutions. Constraining the signature of some parameters, the dimensionless constant is bounded using the flare-out and energy conditions. In both cases, this results in an energy-momentum tensor that violates energy conditions, thus the space-time is threading by exotic matter. However, it is possible to obtain a positive defined density at the wormhole throat and its neighborhood. To further support the study a thoroughly graphical analysis has been performed.
Cite
@article{arxiv.2212.06883,
title = {Minimally deformed wormholes inspired by noncommutative geometry},
author = {Francisco Tello-Ortiz and B. Mishra and A. Alvarez and Ksh. Newton Singh},
journal= {arXiv preprint arXiv:2212.06883},
year = {2023}
}
Comments
20 pages, 6 figures. Accepted Version Fortschritte der physik