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An f(R,T) Gravity Based FLRW Model and Observational Constraints

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arxiv 2210.15433 v3 pith:FGENBPYC submitted 2022-10-26 gr-qc

classification gr-qc
keywords modeldatadensitylambdaestimatedshiftsimequniverse
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abstract

We attempt to construct a Friedmann-Lemaitre-Robertson-Walker(FLRW) cosmological model in $f(R, T)$ gravity which exhibits a phase transition from deceleration to acceleration at present. We take $f(R,T) = R + 2 \lambda T$, $\lambda$ being an arbitrary constant. In our model, the $\lambda$ parameter develops a negative pressure in the universe whose Equation of state is parameterized. The present values of model parameters such as density, Hubble, deceleration, Equation of state, and $\lambda$ are estimated statistically by using the Chi-Square test. For this, we have used three different types of observational data sets: the $46$ Hubble parameter data set, the SNeIa $715$ data sets of distance modulus, and the 66 Pantheon data set (the latest compilation of SNeIa 40 bined plus 26 high red shift apparent magnitude $m_b$ data set in the red shift ranges from $0.014 \leq z \leq 2.26 $). We have calculated the transitional red shift and time. The estimated results for the present values of various model parameters are found as per expectations and surveys. Interestingly, we get the present value of the density $\rho_0$, $\simeq 1.5 \rho_c $. The critical density is estimated as $\rho_c\simeq 1.88 ~ h_0^2~10^{-29}~gm/cm^3 $ in the literature. The higher value of the present density is attributed to the presence of some additional energies in the universe apart from baryon energy. We have examined the behavior of the pressure in our model. It is negative and produces acceleration in the universe. Its present value is obtained as $p_0 \simeq - 0.7 \rho_0$.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Nonsingular Logarithmic Bouncing Cosmology in $f(R,T)$ Gravity with Thermodynamic Viability

    gr-qc 2026-08 reject novelty 4.0 of 10

    A logarithmic scale factor gives a nonsingular bounce in f(R,T)=R+lambda T gravity, but the claimed viable coupling range produces negative energy density at late times, so the model is not viable as stated.

  2. An Accelerating Flat FLRW Model with Observation Constraints and Dynamic $\Lambda$

    physics.gen-ph 2025-04 reject novelty 3.0 of 10

    A four-parameter power-law FLRW model with a dynamic cosmological constant is fit to OHD, Union, Pantheon, and BAO data, giving dataset-dependent H0 values and a universe age around 21.7 billion years.

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