An Axially Symmetric Transitioning models with Observational Constraints
arXiv:2204.04451 · doi:10.1016/j.cjph.2022.09.007
Abstract
In this study, we have demonstrated the expansion history of an axially symmetric Bianchi type-I model of the universe. Our model as of now presents an accelerating universe, which had been in the decelerating phase in the past. Roles of the two crucial Hubble~ and deceleration~ parameters are examined. The energy parameters of the universe are estimated with the help of the latest observational Hubble data (46-data points) and Pantheon data (the latest compilation of SNIa with 40 binned in the redshift range . We also discuss the stability analysis of the model by state finder diagnosis. The analysis reveals that in late time, the model is a quintessence type and points towards the CDM model. Our developed model agrees with observational findings in a proper way. We have discussed some of the physical aspects of the model.
19 pages, 10 figures
References in corpus (19)
- Unified cosmic history in modified gravity: from F(R) theory to Lorentz non-invariant models
- f(R,T) gravity
- Dark energy cosmology: the equivalent description via different theoretical models and cosmography tests
- Raising the bar: new constraints on the Hubble parameter with cosmic chronometers at z2
- Baryon Acoustic Oscillations in the Lyα forest of BOSS DR11 quasars
- Cosmological viability of f(R)-gravity as an ideal fluid and its compatibility with a matter dominated phase
- Two new diagnostics of dark energy
- Baryon Acoustic Oscillations in the Ly-α forest of BOSS quasars
- Hubble parameter measurement constraints on the redshift of the deceleration-acceleration transition, dynamical dark energy, and space curvature
- Signatures of -gravity in cosmology
- Cosmographic bounds on the cosmological deceleration-acceleration transition redshift in gravity
- HD 140283: A Star in the Solar Neighborhood that Formed Shortly After the Big Bang
- Cosmological bouncing solutions in f(T,B) gravity
- Analyzing the tension in gravity models
- diagnostic applied to scalar field models and slowing down of cosmic acceleration
- Transitioning Universe with hybrid scalar field in Bianchi I space-time
- Bianchi Type I model of universe with customized scale factors
- Cosmological model with time varying deceleration parameter in gravity
- A new class of holographic dark energy models in LRS Bianchi Type-I
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- Beyond CDM: Exploring a Dynamical Cosmological Constant Framework Consistent with Late-Time Observations
- Dynamical Oscillations in Dark Energy: Joint Constraints on the CDM Model from DESI, OHD, and Supernova Samples
- Observational constraints in late time for an axially symmetric transitioning model with bulk viscous fluid
- An Accelerating Flat FLRW Model with Observation Constraints and Dynamic
- Anisotropic cosmology using observational datasets: exploring via machine learning approaches
- Dynamical Dark Energy Signatures from a New Transition Parametrization in Flat FLRW Cosmology
- Cosmological Constraints on f(T,B) Gravity from Observations of Early and Late Universe
- Constraining nonminimal f(T) gravity from Primordial Nucleosynthesis to Late-Universe observations