Effective equation of state in modified gravity and observational constraints

Author:

Arora SimranORCID,Meng Xin-heORCID,Pacif S K JORCID,Sahoo P KORCID

Abstract

Abstract In this article, the bulk viscosity is introduced in a modified gravity model. The gravitational action has a general f(R, T) form, where R and T are the curvature scalar and the trace of energy momentum tensor respectively. An effective equation of state (EoS) has been investigated in the cosmological evolution with bulk viscosity. In the present scenario, the Hubble parameter which has a scaling relation with the redshift can be obtained generically. The role of deceleration parameter q and EoS parameter ω is discussed to explain the late-time accelerating expansion of the Universe. The statefinder parameters and Om diagnostic analysis are discussed for our obtained model to distinguish from other dark energy models together with the analysis of energy conditions and velocity of sound for the model. We have also numerically investigated the model by detailed maximum likelihood analysis of 580 type Ia supernovae from Union 2.1 compilation datasets and updated 57 Hubble datasets (31 data points from differential age method and 26 points from BAO and other methods). It is with efforts found that the present model is in good agreement with observations.

Publisher

IOP Publishing

Subject

Physics and Astronomy (miscellaneous)

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Viscous cosmology in f(T) gravity;The European Physical Journal C;2022-11-16

2. Tsallis holographic dark energy scenario in viscous f(Q) gravity with tachyon field;International Journal of Geometric Methods in Modern Physics;2022-10-28

3. Observational Constraints and Some Toy Models in f(Q) Gravity with Bulk Viscous Fluid;Universe;2022-04-13

4. Cosmological constraints on bulk viscous f(Q,T) gravity;Astronomische Nachrichten;2022-03-30

5. Bulk viscous matter and the cosmic acceleration of the universe in f(Q,T) gravity;Journal of High Energy Astrophysics;2022-03

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