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March 13, 2026Modern Physics Letters A1 citations

Viable cosmic bounce with viscous effects in f(Q,Lm): Novel cosmic insights beyond the singularity

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MSM. SharifMGM. Zeeshan GulRMRida Mahmood

Key Points

  • This research aims to explore how bulk viscosity affects cosmic bounce solutions in f(Q,Lm) gravity.
  • Analyzed a flat Friedmann–Robertson–Walker universe model with isotropic matter.
  • Developed a new formulation for the bulk viscosity coefficient.
  • Examined the evolution of the universe using specific functional forms of modified theory.
  • Considered various cosmological parameters to understand their effects.
  • Negative pressure and positive energy density indicate a singularity-free bounce.
  • Violated null energy condition supports the existence of a viable bounce.
  • State parameter aligns with quintessence or phantom behaviors.
  • Findings suggest effective alternatives to standard cosmological models.

Abstract

This study investigates the impact of bulk viscosity on the viability of cosmic bounce solutions in the framework of Formula: see text gravity, where non-metricity is defined by Q and matter-Lagrangian density is represented by Formula: see text. For this purpose, we study the behavior of a flat Friedmann–Robertson–Walker universe model with isotropic matter configuration and new formulation of the bulk viscosity coefficient as Formula: see text. Here, Formula: see text and n are positive constants and Formula: see text represents the bounce epoch. We analyze the influence of this modified framework on the evolution of the universe by considering a specific functional form of this modified theory. We examine several cosmological parameters to analyze the evolution of the universe. Our outcomes indicate that the pressure is negative, energy density is positive and the presence of a singularity-free bounce in this gravitational model is ensured by the violation of null energy condition. The state parameter suggests behavior consistent with a quintessence regime or a phantom era. We conclude that it provides effective substitutes for the standard paradigms of cosmology, hence this yields important perspectives into the early universe and the nature of force of gravitation.

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Cite This Study

Sharif et al. (2026) studied this question.

synapsesocial.com/papers/69b3ab5e02a1e69014ccc3abhttps://doi.org/10.1142/s0217732326500495
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