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Binning is Sinning (Supernova Version): The Impact of Self-calibration in Cosmological Analyses with Type Ia Supernovae

Publication ,  Journal Article
Brout, D; Hinton, SR; Scolnic, D
Published in: Astrophysical Journal Letters
May 10, 2021

Recent cosmological analyses (e.g., JLA, Pantheon) of Type Ia supernovae (SNe Ia) have propagated systematic uncertainties into a covariance matrix and either binned or smoothed the systematic uncertainty vectors in redshift space. We demonstrate that systematic error budgets of these analyses can be improved by a factor of ∼ 1.5 × with the use of unbinned and unsmoothed covariance matrices. To understand this, we employ a separate approach that simultaneously fits for cosmological parameters and additional self-calibrating scale parameters that constrain the size of each systematic. We show that the covariance-matrix approach and scale-parameter approach indeed yield equivalent results, implying that in both cases the data can self-calibrate certain systematic uncertainties, but that this ability is hindered when information is binned or smoothed in redshift space. We review the top systematic uncertainties in current analyses and find that the reduction of systematic uncertainties in the unbinned case depends on whether a systematic is solely degenerate with the cosmological model in redshift space or whether it can be described by additional correlations between supernova properties and luminosity. Furthermore, we show that the power of self-calibration increases with the size of the data set, which presents a tremendous opportunity for upcoming analyses of photometrically classified samples, like those of Legacy Survey of Space and Time (LSST) and the Nancy Grace Roman Telescope (NGRST). However, to take advantage of self-calibration in large, photometrically classified samples, we must first address the issue that binning is required in currently used photometric analysis methods.

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Published In

Astrophysical Journal Letters

DOI

EISSN

2041-8213

ISSN

2041-8205

Publication Date

May 10, 2021

Volume

912

Issue

2

Related Subject Headings

  • Astronomy & Astrophysics
  • 5109 Space sciences
  • 5101 Astronomical sciences
  • 0201 Astronomical and Space Sciences
 

Citation

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Brout, D., Hinton, S. R., & Scolnic, D. (2021). Binning is Sinning (Supernova Version): The Impact of Self-calibration in Cosmological Analyses with Type Ia Supernovae. Astrophysical Journal Letters, 912(2). https://doi.org/10.3847/2041-8213/abf4db
Brout, D., S. R. Hinton, and D. Scolnic. “Binning is Sinning (Supernova Version): The Impact of Self-calibration in Cosmological Analyses with Type Ia Supernovae.” Astrophysical Journal Letters 912, no. 2 (May 10, 2021). https://doi.org/10.3847/2041-8213/abf4db.
Brout D, Hinton SR, Scolnic D. Binning is Sinning (Supernova Version): The Impact of Self-calibration in Cosmological Analyses with Type Ia Supernovae. Astrophysical Journal Letters. 2021 May 10;912(2).
Brout, D., et al. “Binning is Sinning (Supernova Version): The Impact of Self-calibration in Cosmological Analyses with Type Ia Supernovae.” Astrophysical Journal Letters, vol. 912, no. 2, May 2021. Scopus, doi:10.3847/2041-8213/abf4db.
Brout D, Hinton SR, Scolnic D. Binning is Sinning (Supernova Version): The Impact of Self-calibration in Cosmological Analyses with Type Ia Supernovae. Astrophysical Journal Letters. 2021 May 10;912(2).
Journal cover image

Published In

Astrophysical Journal Letters

DOI

EISSN

2041-8213

ISSN

2041-8205

Publication Date

May 10, 2021

Volume

912

Issue

2

Related Subject Headings

  • Astronomy & Astrophysics
  • 5109 Space sciences
  • 5101 Astronomical sciences
  • 0201 Astronomical and Space Sciences