Constraints on Exotic Matter for An Emergent Universe
arXiv:1004.4256 · doi:10.1111/j.1365-2966.2010.16909.x
Abstract
We study a composition of normal and exotic matter which is required for a flat Emergent Universe scenario permitted by the equation of state (EOS)() and predict the range of the permissible values for the parameters and to explore a physically viable cosmological model. The permitted values of the parameters are determined taking into account the data obtained from observations, a model independent BAO peak parameter and CMB shift parameter (WMAP7 data). It is found that although can be very close to zero, most of the observations favours a small and negative . As a consequence, the effective Equation of State parameter for this class of Emergent Universe solutions remains negative always. We also compared the magnitude () vs. redshift() curve obtained in the model with that obtained from the union compilation data. According to our analysis the class of Emergent Universe solutions considered here is not ruled out by the observations.
6 pages, 7 figures, 1 table
References in corpus (5)
Cited by in corpus (30)
- Dark matter, dark energy, and alternate models: A review
- Observational constraints on Hubble constant and deceleration parameter in power-law cosmology
- Emergent universe in chameleon, f(R) and f(T) gravity theories
- Observational Constraint in gravity from the cosmic chronometers and some standard distance measurement parameters
- Fractional Action Cosmology: Emergent, Logamediate, Intermediate, Power law Scenarios of the Universe and Generalized Second Law of Thermodynamics
- Emergent Universe from A Composition of Matter, Exotic Matter and Dark Energy
- Fractional Action Cosmology: Some Dark Energy Models in Emergent, Logamediate and Intermediate Scenarios of the Universe
- Constraints on Energy Momentum Squared Gravity from cosmic chronometers and Supernovae Type Ia data
- Reduced modified Chaplygin gas cosmology
- Emergent Universe with Interacting fluids and Generalized Second Law of Thermodynamics
- Linking little rip cosmologies with regular early universes
- Constraints on Cubic and Gravity from the Cosmic Chronometers, BAO & CMB datasets : Use of Machine Learning Algorithms
- An Emergent Universe supported by chiral cosmological fields in Einstein--Gauss--Bonnet gravity
- Study of QCD generalized ghost dark energy in FRW universe
- Lorentzian wormholes in an emergent universe
- Observational data fitting to constrain Variable Modified Chaplygin Gas in the background of Horava-Lifshitz Gravity
- Observational Constraints of Homogeneous Higher Dimensional Cosmology with Modified Chaplygin Gas
- Cosmology of the interacting Tsallis holographic dark energy in gravity framework
- Constraining Parameters of Generalized Cosmic Chaplygin Gas in Loop Quantum Cosmology
- Generalized equations of state and regular universes
- Observational Constraints of Modified Chaplygin Gas in RS II Brane
- Observational Constraints on the Model Parameters of a Class of Emergent Universe
- Emergent universe revisited through the CSL theory
- Dieterici gas as a Unified Model for Dark Matter and Dark Energy
- Emergent universe: tensor perturbations within the CSL framework
- A comprehensive analysis of Barrow holographic Chaplygin gas model reconstruction and its cosmological consequences
- Observational Study of Higher Dimensional Magnetic Universe in Non-linear Electrodynamics
- Bouncing solutions from generalized EoS
- Revisiting Barrow's Graduated Inflationary Universe: A Warm perspective
- On Distinguishing Different Models of a Class of Emergent Universe Solutions