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April 3, 2026International Journal of Geometric Methods in Modern Physics0 citations

Matter-Geometry Coupled Wormholes Supported by Holographic Dark Energy

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SCSourav ChaudharyJKJitendra KumarSMS. K. Maurya

Key Points

  • The aim is to analyze wormhole solutions influenced by various dark energy models within modified gravity frameworks.
  • Examined four distinct dark energy profiles within [Formula: see text] gravity.
  • Analyzed geometric criteria for traversable wormholes utilizing embedding diagrams.
  • Investigated the null energy requirement and its implications for wormhole formation.
  • Conducted exoticity studies for each wormhole model.
  • Identified ranges of dark energy parameters facilitating wormhole formation.
  • Demonstrated inward light bending at specific radial distances.
  • Confirmed physical plausibility through positive total gravitational energy across all models.

Abstract

This paper provides a comprehensive comparative analysis of wormhole solutions governed by four distinct dark energy configurations within the context of Formula: see text gravity. Every dark energy profile has a distinct form function that fulfills the geometric criteria required for a traversable wormhole. By adjusting the dark energy parameter ç within a limited range (Formula: see text), we specify the range where the null energy requirement is breached, hence facilitating wormhole formation. The structure of the wormhole, especially its flare-out geometry, is shown by embedding diagrams. Our analysis of the deflection angle reveals an inward bending of light beyond a certain radial distance, and the existence of positive total gravitational energy in all models corroborates their physical plausibility. An exoticity study has been conducted for each model structure. This thorough study offers novel insights into the gravitational effects of holographic dark energy in enabling stable wormhole formations.

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Cite This Study

Chaudhary et al. (2026) studied this question.

synapsesocial.com/papers/69cf5e995a333a821460d0bchttps://doi.org/10.1142/s0219887826502178
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