The Great Escape of ionizing photons during Cosmic Morning
Kanak Saha, Roland Bacon, Anne Verhamme, Soumil Maulick, Akio Inoue, Souradeep Bhattacharya, Marc Rafelski, Edmund Christian Herenz, Rogier Windhorst, Michael Rutkowski, Shyam N. Tandon

TL;DR
This study reports the first direct detection of ionizing photons from early galaxies during the Cosmic Morning, revealing higher transparency and properties conducive to reionization than previously modeled.
Contribution
It provides the first direct UV detection of ionizing photons from galaxies at z~6, offering new insights into their role in cosmic reionization.
Findings
Detected ionizing photons at 350A, 392A, and 485A wavelengths.
Stacked spectrum shows a hard slope and high ionizing photon production.
Galaxies exhibit very blue UV continua, young ages, and low metallicities.
Abstract
The end of the Cosmic Dark Age marked the onset of reionization, driven by extreme-UV photons from the first galaxies. Direct detection of such photons has remained challenging due to strong intergalactic attenuation. Here, we report the first direct detection of ionizing photons at rest-frame wavelengths , , and , using deep UV imaging from two independent space observatories: AstroSat and HST. These photons emerge from a stacked sample of spectroscopically confirmed Ly emitters at in the Hubble Ultra Deep Field identified with VLT/MUSE and JWST/NIRSpec. These detections imply a higher transparency of the interstellar and intergalactic media to ionizing radiation than predicted by current models. The stacked spectrum, representative of faint galaxies with (), exhibits a hard slope…
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