UNITY: Confronting Supernova Cosmology's Statistical and Systematic Uncertainties in a Unified Bayesian Framework
arXiv:1507.01602 · doi:10.1088/0004-637X/813/2/137
Abstract
While recent supernova cosmology research has benefited from improved measurements, current analysis approaches are not statistically optimal and will prove insufficient for future surveys. This paper discusses the limitations of current supernova cosmological analyses in treating outliers, selection effects, shape- and color-standardization relations, unexplained dispersion, and heterogeneous observations. We present a new Bayesian framework, called UNITY (Unified Nonlinear Inference for Type-Ia cosmologY), that incorporates significant improvements in our ability to confront these effects. We apply the framework to real supernova observations and demonstrate smaller statistical and systematic uncertainties. We verify earlier results that SNe Ia require nonlinear shape and color standardizations, but we now include these nonlinear relations in a statistically well-justified way. This analysis was primarily performed blinded, in that the basic framework was first validated on simulated data before transitioning to real data. We also discuss possible extensions of the method.
Minor fix in PGM
References in corpus (15)
- New Hubble Space Telescope Discoveries of Type Ia Supernovae at z > 1: Narrowing Constraints on the Early Behavior of Dark Energy
- Improved Cosmological Constraints from New, Old and Combined Supernova Datasets
- Spectra and Light Curves of Six Type Ia Supernovae at 0.511 < z < 1.12 and the Union2 Compilation
- Some Aspects of Measurement Error in Linear Regression of Astronomical Data
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- CfA3: 185 Type Ia Supernova Light Curves from the CfA
- Improved Distances to Type Ia Supernovae with Two Spectroscopic Subclasses
- The Carnegie Supernova Project: Intrinsic Colors of Type Ia Supernovae
- Confirmation of a Star Formation Bias in Type Ia Supernova Distances and its Effect on Measurement of the Hubble Constant
- Ages of Type Ia Supernovae Over Cosmic Time
- Bayesian Estimation Applied to Multiple Species: Towards cosmology with a million supernovae
- Reconsidering the Effects of Local Star Formation On Type Ia Supernova Cosmology
- Precision Measurement of The Most Distant Spectroscopically Confirmed Supernova Ia with the Hubble Space Telescope
- Type Ia Supernova Distance Modulus Bias and Dispersion From K-correction Errors: A Direct Measurement Using Lightcurve Fits to Observed Spectral Time Series
Cited by in corpus (88)
- The Pantheon+ Analysis: Cosmological Constraints
- DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints
- Dark energy two decades after: Observables, probes, consistency tests
- Correcting Type Ia Supernova Distances for Selection Biases and Contamination in Photometrically Identified Samples
- Limits on stellar-mass compact objects as dark matter from gravitational lensing of type Ia supernovae
- Photometric Supernova Classification With Machine Learning
- SuperNNova: an open-source framework for Bayesian, Neural Network based supernova classification
- Simulations of the WFIRST Supernova Survey and Forecasts of Cosmological Constraints
- Strong Dependence of Type Ia Supernova Standardization on the Local Specific Star Formation Rate
- Measuring Dark Energy Properties with Photometrically Classified Pan-STARRS Supernovae. II. Cosmological Parameters
- A blinded determination of from low-redshift Type Ia supernovae, calibrated by Cepheid variables
- First Cosmology Results Using Type Ia Supernovae From the Dark Energy Survey: Analysis, Systematic Uncertainties, and Validation
- Avocado: Photometric Classification of Astronomical Transients with Gaussian Process Augmentation
- Measuring Type Ia Supernova Populations of Stretch and Color and Predicting Distance Biases
- Host Galaxy Identification for Supernova Surveys
- First Cosmology Results using Type Ia Supernova from the Dark Energy Survey: Simulations to Correct Supernova Distance Biases
- Is the expansion of the universe accelerating? All signs point to yes
- A Hierarchical Bayesian SED Model for Type Ia Supernovae in the Optical to Near-Infrared
- Gamma-ray burst prompt correlations: selection and instrumental effects
- The Type Ia Supernova Color-Magnitude Relation and Host Galaxy Dust: A Simple Hierarchical Bayesian Model
- BAHAMAS: new SNIa analysis reveals inconsistencies with standard cosmology
- Redshift evolution of the underlying type Ia supernova stretch distribution
- Redshift-Independent Distances in the NASA/IPAC Extragalactic Database: Methodology, Content and Use of NED-D
- A parametric reconstruction of the cosmological jerk from diverse observational data sets
- Acceleration of the universe: a reconstruction of the effective equation of state
- Measuring the Properties of Dark Energy with Photometrically Classified Pan-STARRS Supernovae. I. Systematic Uncertainty from Core-Collapse Supernova Contamination
- Is the expansion of the universe accelerating? All signs still point to yes a local dipole anisotropy cannot explain dark energy
- Blinding multi-probe cosmological experiments
- STACCATO: A Novel Solution to Supernova Photometric Classification with Biased Training Sets
- Constraining the dark energy models with H(z) data: an approach independent of
- Evidence for Cosmic Acceleration is Robust to Observed Correlations Between Type Ia Supernova Luminosity and Stellar Age
- SICRET: Supernova Ia Cosmology with truncated marginal neural Ratio EsTimation
- Binning is Sinning (Supernova Version): The Impact of Self-Calibration in Cosmological Analyses with Type Ia Supernovae
- A Carbon/Oxygen-dominated Atmosphere Days After Explosion for the "Super-Chandrasekhar" Type Ia SN 2020esm
- The Discovery of a Gravitationally Lensed Supernova Ia at Redshift 2.22
- No rungs attached: A distance-ladder free determination of the Hubble constant through type II supernova spectral modelling
- Is Dark Energy Dynamical in the DESI Era? A Critical Review
- Steve: A hierarchical Bayesian model for Supernova Cosmology
- Model Independent Expansion History from Supernovae: Cosmology versus Systematics
- The effects of varying colour-luminosity relations on supernova science
- The Photometric LSST Astronomical Time-series Classification Challenge (PLAsTiCC): Selection of a performance metric for classification probabilities balancing diverse science goals
- zBEAMS: A unified solution for supernova cosmology with redshift uncertainties
- The Twins Embedding of Type Ia Supernovae I: The Diversity of Spectra at Maximum Light
- ZTF SN Ia DR2: Colour standardisation of Type Ia Supernovae and its dependence on environment
- Reconstruction of interaction rate in Holographic dark energy
- Host Galaxy Mass Combined with Local Stellar Age Improve Type Ia Supernovae Distances
- Application of Bayesian graphs to SN Ia data analysis and compression
- ZTF SN Ia DR2: Environmental dependencies of stretch and luminosity of a volume limited sample of 1,000 Type Ia Supernovae
- Designing and testing inflationary models with Bayesian networks
- On DESI's DR2 exclusion of CDM
- The HST See Change Program: I. Survey Design, Pipeline, and Supernova Discoveries
- Using Rest-Frame Optical and NIR Data from the RAISIN Survey to Explore the Redshift Evolution of Dust Laws in SN Ia Host Galaxies
- Cosmological constraints from low-redshift data
- Photometric classification of HSC transients using machine learning
- Cosmological Tests with the Joint Lightcurve Analysis
- Constraining R Variation Using Highly Reddened Type Ia Supernovae from the Pantheon+ Sample
- Projected distances to host galaxy reduce SNIa dispersion
- Understanding Type Ia supernovae through their U-band spectra
- Standardizing Type Ia supernovae using Near Infrared rebrightening time
- The Interstellar Extinction Toward the Milky Way Bulge with Planetary Nebulae, Red Clump, and RR Lyrae stars
- Aperture-corrected spectroscopic type Ia supernova host galaxy properties
- Initial Evaluation of SNEMO2 and SNEMO7 Standardization Derived From Current Light Curves of Type Ia Supernovae
- SN Ia Standardization on the Rise: Evidence for the Cosmological Importance of Pre-Maximum Measurements
- Forecast for growth-rate measurement using peculiar velocities from LSST supernovae
- SIDE-real: Supernova Ia Dust Extinction with truncated marginal neural ratio estimation applied to real data
- Probing the Consistency of Cosmological Contours for Supernova Cosmology
- An Analysis of Variance of the Pantheon+ Dataset: Systematics in the Covariance Matrix?
- DAmodel: Hierarchical Bayesian Modelling of DA White Dwarfs for Spectrophotometric Calibration
- Hawai'i Supernova Flows: A Peculiar Velocity Survey Using Over a Thousand Supernovae in the Near-Infrared
- Biases from Non-Simultaneous Regression with Correlated Covariates: A Case Study from Supernova Cosmology
- Propagating Uncertainties in the SALT3 Model Training Process to Cosmological Constraints
- Predicting extragalactic distance errors using Bayesian inference in multi-measurement catalogs
- The Velocity Field Olympics: Assessing velocity field reconstructions with direct distance tracers
- New Constraints on Anisotropic Expansion from Supernovae Type Ia
- Analytic auto-differentiable CDM cosmography
- The subtle statistics of the distance ladder: On the distance prior and selection effects
- Incorporating Astrophysical Systematics into a Generalized Likelihood for Cosmology with Type Ia Supernovae
- ZTF SN Ia DR2: Improved SN Ia colors through expanded dimensionality with SALT3+
- STAR NRE: Solving supernova selection effects with set-based truncated auto-regressive neural ratio estimation
- ZTF SN~Ia DR2: Cosmology-independent constraints on Type Ia supernova standardisation from supernova siblings
- Forward-modelling Milky Way Cepheids: selection effects and physical priors in the Gaia-HST calibration
- CIGaRS I: Combined simulation-based inference from type Ia supernovae and host photometry
- Addressing type Ia supernova color variability with a linear spectral template
- Can accelerated expansion of the universe be due to spacetime vorticity?
- An Agnostic Approach to Building Empirical Type Ia Supernova Light Curves: Evidence for Intrinsic Chromatic Flux Variation Using Nearby Supernova Factory Data
- FlowSN: Neural Simulation-Based Inference under Realistic Selection Effects applied to Supernova Cosmology
- Kinematic Probes of Type-II MMG: Padé Cosmographic Analysis of VCDM
- from peculiar velocities: agreement with Planck for Tully--Fisher and supernovae, tension for the fundamental plane