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Dependence of Type Ia supernova luminosities on their local environment
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July 2018 |
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"General Intelligence," Objectively Determined and Measured
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A 2.4% Determination of the Local Value of the Hubble Constant
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Standardizing Type Ia Supernova Absolute Magnitudes Using Gaussian Process Data Regression
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General Intelligence, Objectively Determined and Measured.
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January 1905 |
Dynamics of dark Energy
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A 2.4% Determination of the Local Value of the Hubble Constant
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The peculiar Type IA SN 1991T - Detonation of a white dwarf?
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Using spectral flux ratios to standardize SN Ia luminosities
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May 2009 |
HUBBLE RESIDUALS OF NEARBY TYPE Ia SUPERNOVAE ARE CORRELATED WITH HOST GALAXY MASSES
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Nearby Supernova Factory Observations of SN 2007if: First Total Mass Measurement of a Super-Chandrasekhar-Mass Progenitor
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Confirmation of a Star Formation Bias in Type Ia Supernova Distances and Its Effect on the Measurement of the Hubble Constant
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SNEMO: Improved Empirical Models for Type Ia Supernovae
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Atmospheric extinction properties above Mauna Kea from the Nearby SuperNova Factory spectro-photometric data set
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January 2007 |
Diversity of supernovae Ia determined using equivalent widths of Si II 4000
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October 2008 |
The Type Ia Supernova Color-Magnitude Relation and Host Galaxy Dust: A Simple Hierarchical Bayesian Model
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January 2017 |
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September 2016 |
Spectral homogeneity of type Ia supernovae
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May 2004 |
Nearby Supernova Factory Observations of SN 2005gj: Another Type Ia Supernova in a Massive Circumstellar Envelope
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October 2006 |
Planck 2015 results : XIII. Cosmological parameters
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September 2016 |
CONFIRMATION OF A STAR FORMATION BIAS IN TYPE Ia SUPERNOVA DISTANCES AND ITS EFFECT ON THE MEASUREMENT OF THE HUBBLE CONSTANT
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March 2015 |
Improving Cosmological Distance Measurements Using Twin Type Ia Supernovae
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January 2015 |
Observational Evidence from Supernovae for an Accelerating Universe and a Cosmological Constant
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September 1998 |
An Open Catalog for Supernova Data
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A Hubble diagram of distant type IA supernovae
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Comparative Direct Analysis of Type Ia Supernova Spectra. II. Maximum Light
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April 2006 |
STANDARDIZING TYPE Ia SUPERNOVA ABSOLUTE MAGNITUDES USING GAUSSIAN PROCESS DATA REGRESSION
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March 2013 |
Improved Distances to Type Ia Supernovae with Two Spectroscopic Subclasses
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January 2009 |
Planck 2015 results : XVI. Isotropy and statistics of the CMB
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Spectral properties of Type Ia supernovae up to z~0.3
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January 2010 |
Improving Cosmological Distance Measurements Using twin type ia Supernovae
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December 2015 |
An Open Catalog for Supernova Data
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January 2017 |
Discovery of a supernova explosion at half the age of the Universe
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Nearby Supernova Factory Observations of SN 2005gj: Another Type Ia Supernova in a Massive Circumstellar Envelope
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The relationship between infrared, optical, and ultraviolet extinction
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Smoothing and Differentiation of Data by Simplified Least Squares Procedures.
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Comparative Direct Analysis of Type Ia Supernova Spectra. II. Maximum Light
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The High-Z Supernova Search: Measuring Cosmic Deceleration and Global Cur vature of the Universe Using Type Ia Supernovae
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January 1998 |
The Supernova Legacy Survey: measurement of $\Omega_{\mathsf{M}}$, $\Omega_\mathsf{\Lambda}$ and w from the first year data set
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January 2006 |
Understanding type Ia supernovae through their U -band spectra
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June 2018 |
Spectrophotometric time series of SN 2011fe from the Nearby Supernova Factory
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June 2013 |
Evidence of environmental dependencies of Type Ia supernovae from the Nearby Supernova Factory indicated by local H α
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December 2013 |
Do spectra improve distance measurements of Type Ia supernovae?
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December 2010 |
A Precise Distance Indicator: Type Ia Supernova Multicolor Light‐Curve Shapes
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December 1996 |
Planck 2015 results : XXVI. The Second
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September 2016 |
The reddening law of type Ia supernovae: separating intrinsic variability from dust using equivalent widths
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April 2011 |
Measurements of the Cosmological Parameters Ω and Λ from the First Seven Supernovae at z ≥ 0.35
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July 1997 |
Atmospheric extinction properties above Mauna Kea from the Nearby Supernova Factory spectro-photometric data set
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January 2012 |
The Supernova Legacy Survey 3-year sample: Type Ia supernovae photometric distances and cosmological constraints
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November 2010 |
Baryon acoustic oscillations in the Ly α forest of BOSS DR11 quasars
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January 2015 |
A metric space for Type Ia supernova spectra
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December 2014 |
COLOR DISPERSION AND MILKY-WAY-LIKE REDDENING AMONG TYPE Ia SUPERNOVAE
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December 2013 |
SNEMO: Improved Empirical Models for Type Ia Supernovae
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January 2018 |
Observational Predictions for Sub-Chandrasekhar Mass Explosions: Further Evidence for Multiple Progenitor Systems for Type Ia Supernovae
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March 2019 |
Hubble Residuals of Nearby Type Ia Supernovae Are Correlated with Host Galaxy Masses
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January 2009 |
Evidence for a Spectroscopic Sequence among Type Ia Supernovae
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Gaussian Processes for Machine Learning
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Do spectra improve distance measurements of Type Ia supernovae?
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SALT2: using distant supernovae to improve the use of type Ia supernovae as distance indicators
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February 2007 |
MEASURING EJECTA VELOCITY IMPROVES TYPE Ia SUPERNOVA DISTANCES
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February 2011 |
Determining the Type, Redshift, and Age of a Supernova Spectrum
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September 2007 |
3D deconvolution of hyper-spectral astronomical data: 3D deconvolution of hyper-spectral data
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September 2011 |
Quantitative comparison between type Ia supernova spectra at low and high redshifts: a case study
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April 2007 |
COSMOLOGICAL CONSTRAINTS FROM MEASUREMENTS OF TYPE Ia SUPERNOVAE DISCOVERED DURING THE FIRST 1.5 yr OF THE Pan-STARRS1 SURVEY
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October 2014 |
The Complete Light-curve Sample of Spectroscopically Confirmed SNe Ia from Pan-STARRS1 and Cosmological Constraints from the Combined Pantheon Sample
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May 2018 |
TYPE Ia SUPERNOVA COLORS AND EJECTA VELOCITIES: HIERARCHICAL BAYESIAN REGRESSION WITH NON-GAUSSIAN DISTRIBUTIONS
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SNEMO: Improved Empirical Models for Type Ia Supernovae
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January 2018 |
Hubble Space Telescope studies of low-redshift Type Ia supernovae: evolution with redshift and ultraviolet spectral trends : NUV observations of SNe Ia
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October 2012 |
Measurements of Ω and Λ from 42 High‐Redshift Supernovae
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June 1999 |
A metric space for type Ia supernova spectra
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January 2014 |
Improved cosmological constraints from a joint analysis of the SDSS-II and SNLS supernova samples
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August 2014 |
Spectral properties of type Ia supernovae up to z ~ 0.3
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January 2011 |
Improving Cosmological Distance Measurements Using Twin Type IA Supernovae
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January 2015 |
The Type Ia Supernova Color–Magnitude Relation and Host Galaxy Dust: A Simple Hierarchical Bayesian Model
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June 2017 |
Dynamics of dark energy
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