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Black Holes as Unexpected Beacons of the Early Universe ⚡ экспресс

Original: "Revised AGN Spectral Model Reveals a More Significant Role in Cosmic Reionization"
· Tong Su, Qi Guo, Wenxiang Pei, Linhua Jiang
arXiv:2601.05316v1 · 2026-01-08 · CC BY 4.0 · ⏱ 1 min · Galaxies
New research reveals that supermassive black holes emitted 3–4 times more ultraviolet light than previously thought, playing a key role in the reionization of the universe.
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A few hundred million years after the Big Bang, the universe resembled an endless dark ocean, shrouded in a thick fog of neutral (non-ionized) hydrogen. Then something dispersed the gloom: ultraviolet radiation knocked electrons out of atoms, making the gas as transparent as pure water. This era is called

Reionization — the moment when the universe became transparent to light, like glass after a wash.

For a long time, it was thought that the main illuminators were young galaxies filled with hot stars. But new research puts the spotlight on supermassive black holes — active galactic nuclei. Updated models showed that these cosmic beacons emitted 3–4 times more ionizing light particles than previously estimated. With this, their contribution to clearing the universe reached 20%, and that's without counting the dimmest but most numerous black holes. Astonishing: the darkest objects in space turned out to be brighter than hundreds of millions of Suns.

So, ancient black holes dispelled darkness more actively than thought — our models are getting sharper.

🎯 Reionization took about 600 million years and was uneven: like beacons lighting up at different points in the ocean, slowly dispersing the fog and leaving isolated dark 'islands' of neutral hydrogen.

Scientists
Alan GuthAndrei LindeGeorges LemaîtreJames PeeblesAdam RiessBrian Schmidt
Tags
black hole hydrogen galaxy big bang
Laws
Friedmann equationsHubble's lawHawking radiationgravitational lensingBekenstein-Hawking entropyCoulomb's law
Original: arXiv:2601.05316v1 · CC BY 4.0 · bridge42worlds