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The Pantheon+ Analysis: Evaluating Peculiar Velocity Corrections in Cosmological Analyses with Nearby Type Ia Supernovae

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arxiv 2110.03487 v2 pith:HXSJZ7NV submitted 2021-10-07 astro-ph.CO

classification astro-ph.CO
keywords hubblemotionscorrectionsnearbypeculiarresidualscosmologicalgroup
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Separating the components of redshift due to expansion and peculiar motion in the nearby universe ($z<0.1$) is critical for using Type Ia Supernovae (SNe Ia) to measure the Hubble constant ($H_0$) and the equation-of-state parameter of dark energy ($w$). Here, we study the two dominant 'motions' contributing to nearby peculiar velocities: large-scale, coherent-flow (CF) motions and small-scale motions due to gravitationally associated galaxies deemed to be in a galaxy group. We use a set of 584 low-$z$ SNe from the Pantheon+ sample, and evaluate the efficacy of corrections to these motions by measuring the improvement of SN distance residuals. We study multiple methods for modeling the large and small-scale motions and show that, while group assignments and CF corrections individually contribute to small improvements in Hubble residual scatter, the greatest improvement comes from the combination of the two (relative standard deviation of the Hubble residuals, Rel. SD, improves from 0.167 to 0.157 mag). We find the optimal flow corrections derived from various local density maps significantly reduce Hubble residuals while raising $H_0$ by $\sim0.4$ km s$^{-1}$ Mpc$^{-1}$ as compared to using CMB redshifts, disfavoring the hypothesis that unrecognized local structure could resolve the Hubble tension. We estimate that the systematic uncertainties in cosmological parameters after optimally correcting redshifts are 0.06-0.11 km s$^{-1}$ Mpc$^{-1}$ in $H_0$ and 0.02-0.03 in $w$ which are smaller than the statistical uncertainties for these measurements: 1.5 km s$^{-1}$ Mpc$^{-1}$ for $H_0$ and 0.04 for $w$.

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Cited by 4 Pith papers

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  3. The DESI DR1/DR2 evidence for dynamical dark energy is biased by low-redshift supernovae

    astro-ph.CO 2025-02 conditional novelty 5.0 of 10

    The DESI dynamical dark energy preference drops below 2 sigma after correcting a 0.043 mag intercept discrepancy in the low-redshift supernovae of DESY5.

  4. Updated 1.1% Precision Values of the Hubble Constant with Corrected Pantheon+ and Dark Energy Survey (DES)-DOVEKIE Type Ia Supernovae

    astro-ph.CO 2026-07 accept novelty 4.0 of 10

    Corrected Pantheon+ and DES-DOVEKIE leave H0DN at H0≈73.1–73.3 km s⁻¹ Mpc⁻¹ (main baseline 73.264±0.806), so the ~6.4–6.85σ tension with CMB+ΛCDM remains.

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