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Leveraging SN Ia spectroscopic similarity to improve the measurement of $H_0$

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arxiv 2306.00070 v1 pith:RRCZSIDF submitted 2023-05-31 astro-ph.CO

classification astro-ph.CO
keywords hubblespectroscopicaccountingconstantdifferencesstandardizeduncertaintycovariance
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abstract

Recent studies suggest spectroscopic differences explain a fraction of the variation in Type Ia supernova (SN Ia) luminosities after light-curve/color standardization. In this work, (i) we empirically characterize the variations of standardized SN Ia luminosities, and (ii) we use a spectroscopically inferred parameter, SIP, to improve the precision of SNe Ia along the distance ladder and the determination of the Hubble constant ($H_0$). First, we show that the \texttt{Pantheon+} covariance model modestly overestimates the uncertainty of standardized magnitudes by $\sim 7$%, in the parameter space used by the $\texttt{SH0ES}$ Team to measure $H_0$; accounting for this alone yields $H_0 = 73.01 \pm 0.92$ km s$^{-1}$ Mpc$^{-1}$. Furthermore, accounting for spectroscopic similarity between SNe~Ia on the distance ladder reduces their relative scatter to $\sim0.12$ mag per object (compared to $\sim 0.14$ mag previously). Combining these two findings in the model of SN covariance, we find an overall 14% reduction (to $\pm 0.85$km s$^{-1}$ Mpc$^{-1}$) of the uncertainty in the Hubble constant and a modest increase in its value. Including a budget for systematic uncertainties itemized by Riess et al. (2022a), we report an updated local Hubble constant with $\sim1.2$% uncertainty, $H_0 = 73.29 \pm 0.90$km s$^{-1}$ Mpc$^{-1}$. We conclude that spectroscopic differences among photometrically standardized SNe Ia do not explain the ``Hubble tension." Rather, accounting for such differences increases its significance, as the discrepancy against $\Lambda$CDM calibrated by the ${\it Planck}$ 2018 measurement rises to 5.7$\sigma$.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Interpreting the Hubble tension with a cascade decaying dark matter sector

    astro-ph.CO 2025-07 conditional novelty 6.0 of 10

    A cascade decaying dark matter model combining early and late effects still cannot reduce the Hubble tension below about 3 sigma, and is statistically disfavored relative to Lambda CDM.

  2. Two Dynamical Scenarios for Binned Master Sample Interpretation

    astro-ph.CO 2025-07 reject novelty 4.0 of 10

    A model where dark energy is created by gravity and interacts with matter can mimic the decreasing running Hubble constant seen in binned supernovae, but only after its free parameter is tuned to that same trend.

  3. Dark Energy and the Symbiosis Between Micro-physics and Cosmology (Naturally)

    hep-th 2025-08 unverdicted novelty 2.0 of 10

    A review arguing that technical naturalness, powered by low-energy scale invariance and supersymmetric extra dimensions, is the most promising route to solving the cosmological constant problem.

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