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The Cosmological Optical Convergence: Extragalactic Background Light from TeV Gamma Rays

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arxiv 2410.07011 v1 pith:OJFXONUQ submitted 2024-10-09 astro-ph.HE

The Cosmological Optical Convergence: Extragalactic Background Light from TeV Gamma Rays

classification astro-ph.HE
keywords intensityopticalgammaextragalacticbackgroundbandconvergencecosmological
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The intensity of the extragalactic background (EBL), the accumulated optical and infrared emissions since the first stars, is the subject of a decades-long tension in the optical band. These photons form a target field that attenuates the $\gamma$-ray flux from extragalactic sources. This paper reports the first $\gamma$-ray measurement of the EBL spectrum at $z=0$ that is purely parametric and independent of EBL evolution with redshift, over a wavelength range from $0.18$ to $120\,\mu$m. Our method extracts the EBL absorption imprint on more than 260 archival TeV spectra from the STeVECat catalog, by marginalizing nuisance parameters describing the intrinsic emission and instrumental uncertainties. We report an intensity at 600 nm of $6.9 \pm 1.9$ nW m$^{-2}$ sr$^{-1}\,\times\, h_{70}$, which is indistinguishable from the intensity derived from integrated galaxy light (IGL) and compatible with direct measurements taken beyond Pluto's orbit. We exclude with $95\,\%$ confidence diffuse contributions to the EBL with an intensity relative to the IGL, $f_\mathrm{diff}$, greater than $20\,\%$ and provide a measurement of the expansion rate of the universe at $z=0$, $H_0 = 67^{+7}_{-6}$ km s$^{-1}$ Mpc$^{-1}\,\times\, (1+f_\mathrm{diff})$, which is EBL-model independent. IGL, direct and $\gamma$-ray measurements agree on the EBL intensity in the optical band, finally reaching a cosmological optical convergence.

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Cited by 1 Pith paper

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

  1. Constraining cosmological parameters from very-high-energy $\gamma$-ray attenuation in blazar spectra: Bayesian inference and systematic uncertainties

    astro-ph.HE 2026-07 conditional novelty 6.0

    Gamma-ray attenuation in 241 blazar spectra constrains the combined opacity/Hubble ratio r=1.723^{+0.096}_{-0.095}, giving H0=58.3^{+3.4}_{-3.0} km/s/Mpc (fixed EBL) or 60.5^{+10.8}_{-10.0} with an 18% EBL-scale uncertainty.