Color Dispersion and Milky Way Reddening Among Type Ia Supernovae
arXiv:1306.4050 · doi:10.1088/0004-637X/780/1/37
Abstract
Past analyses of Type Ia Supernovae (SNe Ia) have identified an irreducible scatter of 5-10% in distance widely attributed to an intrinsic dispersion in luminosity. Another, equally valid, source of this scatter is intrinsic dispersion in color. Misidentification of the true source of this scatter can bias both the retrieved color-luminosity relation and cosmological parameter measurements. The size of this bias depends on the magnitude of the intrinsic color dispersion relative to the distribution of colors that correlate with distance. We produce a realistic simulation of a misattribution of intrinsic scatter, and find a negative bias in the recovered color-luminosity relation, beta, of dbeta -1.0 (~33%) and a positive bias in the equation of state parameter, w, of dw +0.04 (~4%). We re-analyze current published data sets with the assumptions that the distance scatter is predominantly the result of color. Unlike previous analyses, we find that the data are consistent with a Milky Way reddening law R_V=3.1, and that a Milky Way dust model better predicts the asymmetric color-luminosity trends than the conventional luminosity scatter hypothesis. We also determine that accounting for color variation reduces the correlation between various Host galaxy properties and Hubble residuals by ~20%.
9 pages, 5 figures. Submitted to The Astrophysical Journal
References in corpus (9)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- 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
- Improved Distances to Type Ia Supernovae with Multicolor Light Curve Shapes: MLCS2k2
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- Improved Distances to Type Ia Supernovae with Two Spectroscopic Subclasses
- SiFTO: An Empirical Method for Fitting SNe Ia Light Curves
- Constraints on dark energy with the LOSS SN Ia sample
- Host Galaxies of Type Ia Supernovae from the Nearby Supernova Factory
Cited by in corpus (72)
- The Complete Light-curve Sample of Spectroscopically Confirmed Type Ia Supernovae from Pan-STARRS1 and Cosmological Constraints from The Combined Pantheon Sample
- Improved cosmological constraints from a joint analysis of the SDSS-II and SNLS supernova samples
- Observational clues to the progenitors of Type-Ia supernovae
- Cosmological Constraints from Measurements of Type Ia Supernovae discovered during the first 1.5 years of the Pan-STARRS1 Survey
- Correcting Type Ia Supernova Distances for Selection Biases and Contamination in Photometrically Identified Samples
- The Carnegie Supernova Project: Intrinsic Colors of Type Ia Supernovae
- The Data Release of the Sloan Digital Sky Survey-II Supernova Survey
- Simulations of the WFIRST Supernova Survey and Forecasts of Cosmological Constraints
- Type Ia Supernova Rate Measurements to Redshift 2.5 from CANDELS : Searching for Prompt Explosions in the Early Universe
- It's Dust: Solving the Mysteries of the Intrinsic Scatter and Host-Galaxy Dependence of Standardized Type Ia Supernova Brightnesses
- Systematic Uncertainties Associated with the Cosmological Analysis of the First Pan-STARRS1 Type Ia Supernova Sample
- The Pantheon+ Analysis: SuperCal-Fragilistic Cross Calibration, Retrained SALT2 Light Curve Model, and Calibration Systematic Uncertainty
- The Foundation Supernova Survey: Motivation, Design, Implementation, and First Data Release
- Supercal: Cross-Calibration of Multiple Photometric Systems to Improve Cosmological Measurements with Type Ia Supernovae
- Extensive HST Ultraviolet Spectra and Multi-wavelength Observations of SN 2014J in M82 Indicate Reddening and Circumstellar Scattering by Typical Dust
- Interstellar Extinction Curve Variations Toward the Inner Milky Way: A Challenge to Observational Cosmology
- Ages of Type Ia Supernovae Over Cosmic Time
- The ejected mass distribution of type Ia supernovae: A significant rate of non-Chandrasekhar-mass progenitors
- Should Type Ia Supernova Distances be Corrected for their Local Environments?
- Measuring Type Ia Supernova Populations of Stretch and Color and Predicting Distance Biases
- Diversity in extinction laws of Type Ia supernovae measured between and
- UNITY: Confronting Supernova Cosmology's Statistical and Systematic Uncertainties in a Unified Bayesian Framework
- The Foundation Supernova Survey: Measuring Cosmological Parameters with Supernovae from a Single Telescope
- First Cosmology Results using Type Ia Supernova from the Dark Energy Survey: Simulations to Correct Supernova Distance Biases
- Measuring nickel masses in Type Ia supernovae using cobalt emission in nebular phase spectra
- Illuminating a Dark Lens : A Type Ia Supernova Magnified by the Frontier Fields Galaxy Cluster Abell 2744
- A Hierarchical Bayesian SED Model for Type Ia Supernovae in the Optical to Near-Infrared
- CfAIR2: Near Infrared Light Curves of 94 Type Ia Supernovae
- Cosmological Parameter Uncertainties from SALT-II Type Ia Supernova Light Curve Models
- A unified explanation for the supernova rate-galaxy mass dependency based on supernovae discovered in Sloan galaxy spectra
- The Type Ia Supernova Color-Magnitude Relation and Host Galaxy Dust: A Simple Hierarchical Bayesian Model
- Reconsidering the Effects of Local Star Formation On Type Ia Supernova Cosmology
- Extending Supernova Spectral Templates for Next-Generation Space Telescope Observations
- Extending the supernova Hubble diagram to z~1.5 with the Euclid space mission
- SUGAR: An improved empirical model of Type Ia Supernovae based on spectral features
- Testing the Consistency of Dust Laws in SN Ia Host Galaxies: A BayeSN Examination of Foundation DR1
- Measuring the Properties of Dark Energy with Photometrically Classified Pan-STARRS Supernovae. I. Systematic Uncertainty from Core-Collapse Supernova Contamination
- The Zwicky Transient Facility Type Ia supernova survey: first data release and results
- Type Ia Supernovae are Excellent Standard Candles in the Near-Infrared
- Distances with <4% Precision from Type Ia Supernovae in Young Star-Forming Environments
- Astronomical Distance Determination in the Space Age. Secondary distance indicators
- Type Ia Supernova Colors and Ejecta Velocities: Hierarchical Bayesian Regression with Non-Gaussian Distributions
- Near-infrared light curves of Type Ia supernovae: Studying the properties of the second maximum
- Brane with variable tension as a possible solution to the problem of the late cosmic acceleration
- Red and Reddened: Ultraviolet through Near-Infrared Observations of Type Ia Supernova 2017erp
- Molecular gas at supernova local environments unveiled by EDGE
- Binning is Sinning (Supernova Version): The Impact of Self-Calibration in Cosmological Analyses with Type Ia Supernovae
- The SkyMapper Transient Survey
- The Discovery of a Gravitationally Lensed Supernova Ia at Redshift 2.22
- An Empirical Fitting Method to Type Ia Supernova Light Curves. III. A Three-Parameter Relationship: Peak Magnitude, Rise Time, and Photospheric Velocity
- SweetSpot: Near-Infrared Observations of Thirteen Type Ia Supernovae from a New NOAO Survey Probing the Nearby Smooth Hubble Flow
- Type Ia supernova Hubble diagram with near-infrared and optical observations
- Revisit of constraints on holographic dark energy: SNLS3 dataset with the effects of time-varying and different light-curve fitters
- SDSS-II Supernova Survey: An Analysis of the Largest Sample of Type Ia Supernovae and Correlations with Host-Galaxy Spectral Properties
- First Results from the La Silla-QUEST Supernova Survey and the Carnegie Supernova Project
- Light Curves of 213 Type Ia Supernovae from the ESSENCE Survey
- Probing the isotropy of cosmic acceleration using different supernova samples
- The First Data Release from SweetSpot: 74 Supernovae in 36 Nights on WIYN+WHIRC
- Breaking the color-reddening degeneracy in type Ia supernovae
- Late-Time Observations of Type Ia Supernova SN 2014J with the Hubble Space Telescope Wide Field Camera 3
- Effects of a time-varying color-luminosity parameter on the cosmological constraints of modified gravity models
- The cosmic transparency measured with Type Ia supernovae: implications for intergalactic dust
- The Ultraviolet Colors of Type Ia Supernovae and their Photospheric Velocities
- Constraining R Variation Using Highly Reddened Type Ia Supernovae from the Pantheon+ Sample
- Understanding Type Ia supernovae through their U-band spectra
- Biases from Non-Simultaneous Regression with Correlated Covariates: A Case Study from Supernova Cosmology
- An Exploration of Heterogeneity in Supernova Type Ia Samples
- from multi-waveband galaxy polarimetry in supernovae vicinity
- Highly reddened type Ia supernova SN 2004ab: another case of anomalous extinction
- Photometric properties of intermediate redshift Type Ia Supernovae observed by SDSS-II Supernova Survey
- ZTF SN~Ia DR2: Cosmology-independent constraints on Type Ia supernova standardisation from supernova siblings
- An Agnostic Approach to Building Empirical Type Ia Supernova Light Curves: Evidence for Intrinsic Chromatic Flux Variation Using Nearby Supernova Factory Data