Holographic Dark Energy as a Source for Wormholes in Modified Gravity
G.G.L. Nashed, A. Eid

TL;DR
This paper constructs traversable wormhole models in modified gravity using holographic dark energy inspired by entropy formalism, analyzing their physical properties and energy condition violations.
Contribution
It introduces explicit wormhole solutions in $f( ext{R}, ext{T})$ gravity based on holographic dark energy densities derived from entropy formalism, exploring their physical viability.
Findings
Shape functions satisfy traversability conditions.
Null energy condition is violated, indicating exotic matter is needed.
Varying parameters affects force balance and energy conditions.
Abstract
Traversable wormhole solutions are explored in gravity, a curvature--matter extension in which is the Ricci scalar and denotes the trace of the energy--momentum tensor. To generate explicit wormhole models, we prescribe holographic dark-energy densities based on entropy formalism proposed by R\'enyi, Moradpour, and Bekenstein--Hawking, namely \[ \rho_{\textit{R}} = \frac{\alpha}{4\alpha_1 r^4 c^2 \kappa}\ln\!\left(1+\pi \alpha_1 r^2\right), \qquad \rho_{\textit{M}} = \frac{\alpha}{4\pi r^2 c^2 \kappa \left(\pi \alpha_1 r^2 + 1\right)}, \qquad \rho_{\textit{BH}} = \frac{\alpha}{4 c^2 \kappa r^2}, \] with and carrying dimensions of . The corresponding shape functions obtained from the field equations satisfy the standard throat and flare-out requirements for traversability. We then study how varying …
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Cosmology and Gravitation Theories · Noncommutative and Quantum Gravity Theories
