Probing for the Cosmological Parameters with PLANCK Measurement
arXiv:0708.1111 · doi:10.1142/S0218271808013698
Abstract
We investigate the constraints on cosmological parameters especially for EoS of dark energy, inflationary parameters, neutrino mass and curvature of universe using simulated Planck data. Firstly we determine cosmological parameters with current observations including ESSENCE, WMAP3, Boomerang-2K2, CBI, VSA, ACBAR, SDSS LRG and 2dFGRS, and take best-fit model as the fiducial model in simulations. In simulations we pay attention to the effects of dynamical dark energy in determination of cosmological parameters. We add simulated SNAP data to do all the simulations. Using present data, we find Quintom dark energy model is mildly favored while \LambdaCDM remains a good fit. In the framework of dynamical dark energy, the constraints on inflationary parameters, m_ν and Ω_{K} become weak compared with the constraints in \LambdaCDM. Intriguingly, we find that the inflationary models with a "blue" tilt, which are excluded about 2σin \LambdaCDM model, are well within 2σregion with the presence of the dynamics of dark energy. The upper limits of neutrino mass are weakened by a factor of 2 (95% C.L.), say, m_ν<1.59 eV and m_ν<1.53 eV for two forms of parametrization of the equation of state of dark energy. The flat universe is a good fit to the current data, namely, |Ω_{K}|<0.03 (95% C.L.). With the simulated Planck and SNAP data, dynamical dark energy and \LambdaCDM might be distinguished at 4σ. And uncertainties of inflationary parameters, m_ν and Ω_{K} can be reduced obviously. We also constrain the rotation angle Δα, denoting possible cosmological CPT violation, with simulated Planck and CMBpol data and find that our results are much more stringent than current constraint and will verify cosmological CPT symmetry with a higher precision. (Abridged)
15 pages, 8 figures and 3 tables, Accepted for publication in Int.J.Mod.Phys.D
References in corpus (16)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Cosmology and the Fate of Dilatation Symmetry
- Cosmological Constraints from the SDSS Luminous Red Galaxies
- Three Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Polarization Analysis
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Temperature Analysis
- Can dark energy evolve to the Phantom?
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Beam Profiles, Data Processing, Radiometer Characterization and Systematic Error Limits
- Crossing the Phantom Divide
- Probing for dynamics of dark energy and curvature of universe with latest cosmological observations
- Cosmological Information from Lensed CMB Power Spectra
- Features in Dark Energy Equation of State and Modulations in the Hubble Diagram
- Accelerating cosmologies tested by distance measures
- Probing Dynamics of Dark Energy with Supernova, Galaxy Clustering and the Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations
- Cosmological CPT Violation, Baryon/Leptogenesis and CMB Polarization
- Constraints on Dark Energy Models Including Gamma Ray Bursts
- Cosmological neutrino mass limit and the dynamics of dark energy
Cited by in corpus (20)
- Constraint on Coupled Dark Energy Models from Observations
- Optimal limits on primordial magnetic fields from CMB temperature bispectrum of passive modes
- From Equivalence Principles to Cosmology: Cosmic Polarization Rotation, CMB Observation, Neutrino Number Asymmetry, Lorentz Invariance and CPT
- The High Redshift Integrated Sachs-Wolfe Effect
- Oscillations in the dark energy EoS: new MCMC lessons
- Early Dark Energy at High Redshifts: Status and Perspectives
- Cosmological parameters after WMAP5: forecasts for Planck and future galaxy surveys
- Redshift evolution of cosmic birefringence in CMB anisotropies
- Violating Electrodynamics and Chern-Simons Modified Gravity
- Large Gravitational Waves and Lyth Bound in Multi Brane Inflation
- Constraining neutrino properties with a Euclid-like galaxy cluster survey
- Estimating cosmological parameters from future gravitational lens surveys
- Testing CPT Symmetry with Current and Future CMB Measurements
- Cosmological CPT Violation and CMB Polarization Measurements
- Testing Oscillating Primordial Spectrum and Oscillating Dark Energy with Astronomical Observations
- Breaking through the high redshift bottleneck of Observational Hubble parameter Data: The Sandage-Loeb signal Scheme
- Constraints on dark energy from baryon acoustic peak and galaxy cluster gas mass measurements
- Global neutrino parameter estimation using Markov Chain Monte Carlo
- Primordial Gravitational Waves Measurements and Anisotropies of CMB Polarization Rotation
- Cosmic Reionization Study : Principle Component Analysis After Planck