Probing dark energy and neutrino mass from upcoming lensing experiments of CMB and galaxies
arXiv:1009.3204 · doi:10.1088/1475-7516/2010/12/027
Abstract
We discuss the synergy of the cosmic shear and CMB lensing experiments to simultaneously constrain the neutrino mass and dark energy properties. Taking fully account of the CMB lensing, cosmic shear, CMB anisotropies, and their cross correlation signals, we clarify a role of each signal, and investigate the extent to which the upcoming observations by a high-angular resolution experiment of CMB and deep galaxy imaging survey can tightly constrain the neutrino mass and dark energy equation-of-state parameters. Including the primary CMB information as a prior cosmological information, the Fisher analysis reveals that the time varying equation-of-state parameters, given by w(a)=w_0+w_a(1-a), can be tightly constrained with the accuracies of 5% for w_0 and 15% for w_a, which are comparable to or even better than those of the stage-III type surveys neglecting the effect of massive neutrinos. In other words, including the neutrino mass in the parameter estimation would not drastically alter the Figure-of-Merit estimates of dark energy parameters from the weak lensing measurements. For the neutrino mass, a clear signal for total neutrino mass with 0.1 eV can be detected with 2-sigma significance. The robustness and sensitivity of these results are checked in detail by allowing the setup of cosmic shear experiment to vary as a function of observation time or exposure time, showing that the improvement of the constraints very weakly depends on the survey parameters, and the results mentioned above are nearly optimal for the dark energy parameters and the neutrino mass.
28 pages, 12 figures, published in JCAP, minor typos corrected
References in corpus (20)
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Massive neutrinos and cosmology
- Resumming Cosmological Perturbations via the Lagrangian Picture: One-loop Results in Real Space and in Redshift Space
- Nonlinear Evolution of Baryon Acoustic Oscillations
- Report of the Dark Energy Task Force
- Detection of Gravitational Lensing in the Cosmic Microwave Background
- Cosmology with Weak Lensing Surveys
- Probing cosmological parameters with the CMB: Forecasts from full Monte Carlo simulations
- Cosmic Microwave Weak lensing data as a test for the dark universe
- Correlation of CMB with large-scale structure: II. Weak lensing
- Flowing with Time: a New Approach to Nonlinear Cosmological Perturbations
- ACTPol: A polarization-sensitive receiver for the Atacama Cosmology Telescope
- The Atacama Cosmology Telescope: A Measurement of the Cosmic Microwave Background Power Spectrum at 148 and 218 GHz from the 2008 Southern Survey
- Optimal Surveys for Weak Lensing Tomography
- Nonlinear power spectrum in the presence of massive neutrinos: perturbation theory approach, galaxy bias and parameter forecasts
- Finding Evidence for Massive Neutrinos using 3D Weak Lensing
- CMB Lensing Constraints on Neutrinos and Dark Energy
- Chasing the non-linear evolution of matter power spectrum with numerical resummation method: solution of closure equations
Cited by in corpus (33)
- Neutrino mass from Cosmology
- Towards a cosmological neutrino mass detection
- Cosmological and Astrophysical Neutrino Mass Measurements
- Bias-Hardened CMB Lensing
- BICEP2 / Keck Array VIII: Measurement of gravitational lensing from large-scale B-mode polarization
- Physical effects involved in the measurements of neutrino masses with future cosmological data
- Neutrino constraints from future nearly all-sky spectroscopic galaxy surveys
- Measuring neutrino masses with a future galaxy survey
- First Measurement of the Cross-Correlation of CMB Lensing and Galaxy Lensing
- Strong Bayesian Evidence for the Normal Neutrino Hierarchy
- Full-sky lensing reconstruction of gradient and curl modes from CMB maps
- Dark Energy and Neutrino Masses from Future Measurements of the Expansion History and Growth of Structure
- Probing the neutrino mass hierarchy with CMB weak lensing
- Constraints on neutrino mass from Cosmic Microwave Background and Large Scale Structure
- CMB Lensing Bispectrum from Nonlinear Growth of the Large Scale Structure
- Magnification effect on the detection of primordial non-Gaussianity from photometric surveys
- Bias-Hardened CMB Lensing with Polarization
- Weak lensing generated by vector perturbations and detectability of cosmic strings
- Full-sky formulae for weak lensing power spectra from total angular momentum method
- Evidence for the Cross-correlation between Cosmic Microwave Background Polarization Lensing from POLARBEAR and Cosmic Shear from Subaru Hyper Suprime-Cam
- Measurement of a Cosmographic Distance Ratio with Galaxy and CMB Lensing
- The impact of baryonic physics and massive neutrinos on weak lensing peak statistics
- Cosmological Vlasov-Poisson Simulations of Structure Formation with Relic Neutrinos: Nonlinear Clustering and the Neutrino Mass
- Neutrinos and dark energy constraints from future galaxy surveys and CMB lensing information
- Weak Lensing Science, Surveys, and Systematics
- Constraining cosmic string parameters with curl mode of CMB lensing
- The Physical Origin of Dark Energy Constraints from Rubin Observatory and CMB-S4 Lensing Tomography
- Constraints on Neutrino Mass from Sunyaev--Zeldovich Cluster Surveys
- Too hot to handle? Analytic solutions for massive neutrino or warm dark matter cosmologies
- Probing Neutrinos from Planck and Forthcoming Galaxy Redshift Surveys
- Impact of nonlinear growth of the large-scale structure on CMB B-mode delensing
- Constraints on the Neutrino Mass from SZ Surveys
- Impact of reionization history on constraining primordial gravitational waves in future all-sky cosmic microwave background experiments