Role of cosmic voids and their matter properties in shaping wormhole geometry in generalized geometry-matter coupling gravity
A. Errehymy, S. Hansraj

TL;DR
This paper explores how cosmic voids influence wormhole geometries within a modified gravity framework, revealing new solutions where void properties affect energy conditions and produce unique gravitational lensing effects.
Contribution
It introduces a novel model linking cosmic voids to wormhole solutions in $f(R, ext{L}_m,T)$ gravity, highlighting the impact of void matter properties on spacetime structure.
Findings
Void properties affect wormhole geometry and energy condition violations.
Wormholes exhibit light-repelling gravitational lensing effects.
Cosmic voids can significantly influence spacetime in modified gravity models.
Abstract
Cosmic voids are increasingly recognized as a promising tool for cosmological exploration. Their distribution and density profiles are highly responsive to alterations in gravitational theories, along with the influences of dark energy and neutrinos. Investigating voids offers a compelling opportunity to uncover signatures of alternative gravity models on a cosmological level. Voids span a notable range of density contrasts, from approximately - near their centers to around at their edges, where screening mechanisms become less effective. The primary objective of this study is to explore a novel model that introduces a new category of wormhole solutions by leveraging cosmic voidsvast underdense regions of the universefor the first time. We focus on identifying new exact static wormhole models by proposing an alternative viewpoint on their matter content, rooted in the…
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