The Self-Calibrating Hubble Diagram
arXiv:1201.0765 · doi:10.1088/1475-7516/2012/04/001
Abstract
As an increasing number of well measured type Ia supernovae (SNe Ia) become available, the statistical uncertainty on w has been reduced to the same size as the systematic uncertainty. The statistical error will decrease further in the near future, and hence the improvement of systematic uncertainties needs to be addressed, if further progress is to be made. We study how uncertainties in the primary reference spectrum - which are a main contribution to the systematic uncertainty budget - affect the measurement of the Dark Energy equation of state parameter w from SNe Ia. The increasing number of SN observations can be used to reduce the uncertainties by including perturbations of the reference spectrum as nuisance parameters in a cosmology fit, thus "self-calibrating" the Hubble diagram. We employ this method to real SNe data for the first time and find the perturbations of the reference spectrum consistent with zero at the 1%-level. For future surveys we estimate that ~3500 SNe will be required for our method to outperform the standard method of deriving the cosmological parameters.
17 pages, 8 figures, 1 table. Update to revised version accepted for publication in JCAP
References in corpus (18)
- The Supernova Legacy Survey: Measurement of Omega_M, Omega_Lambda and w from the First Year Data Set
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- New Constraints on , , and w from an Independent Set of Eleven High-Redshift Supernovae Observed with HST
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- SALT2: using distant supernovae to improve the use of Type Ia supernovae as distance indicators
- First-year Sloan Digital Sky Survey-II (SDSS-II) Supernova Results: Hubble Diagram and Cosmological Parameters
- The Supernova Legacy Survey 3-year sample: Type Ia Supernovae photometric distances and cosmological constraints
- SDSS Standard Star Catalog for Stripe 82: the Dawn of Industrial 1% Optical Photometry
- SALT: a Spectral Adaptive Light curve Template for Type Ia Supernovae
- Gemini Spectroscopy of Supernovae from SNLS: Improving High Redshift SN Selection and Classification
- The reddening law of Type Ia Supernovae: separating intrinsic variability from dust using equivalent widths
- Photometric Calibration of the Supernova Legacy Survey Fields
- Reducing Zero-point Systematics in Dark Energy Supernova Experiments
- An Improved Photometric Calibration of the Sloan Digital Sky Survey Imaging Data
- Optimal Extraction of Cosmological Information from Supernova Data in the Presence of Calibration Uncertainties