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May 16, 2026International Journal of Geometric Methods in Modern Physics0 citations

Phase Transition in Anisotropic Cosmology: Bouncing Bianchi-V Model with Evolving q in f(R,T) Gravity

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SSSonia SharmaKSKulwinder SinghRTR. K. Tiwari

Key Points

  • This research aims to investigate the Bianchi type-V model within the framework of f(R,T) gravity, with a focus on cosmic dynamic parameters.
  • Analyzed the field equations under the assumption that the cosmic jerk parameter is proportional to the negative deceleration parameter.
  • Explored scenarios involving various cosmological parameters such as Hubble parameter, spatial volume, and energy density.
  • The model reveals relationships between the cosmic jerk, deceleration parameter, and other cosmological dynamics.
  • Demonstrates significant physical characteristics affected by the evolving parameters in f(R,T) gravity.

Abstract

We have studied the Bianchi type-V model in the context of f(R, T) gravity in this research. Here we have considered the f(R, T) = R + 2f(T) where f(T)= 𝜆T where 𝜆 is an arbitrary constant, R is the Ricci scalar, T is the trace of stress energy momentum tensor. To find the solution of field equations, we have assumed the condition that cosmic jerk parameter j is directly proportional to negative of deceleration parameter q, namely j ∝ -q. The discussion includes many scenarios involving the Hubble parameter (H), the spatial volume (V), the deceleration parameter (q), the energy density (ρ), the pressure of matter (p), and the cosmological constant (Λ). The model's geometrical and physical characteristics have also been covered.

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Cite This Study

Sharma et al. (2026) studied this question.

synapsesocial.com/papers/6a080b38a487c87a6a40d54bhttps://doi.org/10.1142/s0219887826502427
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