JWST Detects Earliest Known 'Black Hole Star' From Cosmic Dawn

Astronomers using the James Webb Space Telescope have identified what may be the earliest example of a rapidly growing black hole surrounded by dense gas, potentially explaining how supermassive black holes formed shortly after the Big Bang.

By Sama News Agency
August 16, 2026
Three side-by-side scientific illustrations showing different celestial objects: a bright blue and white star with concentric rings, a flat disk of glowing material surrounding a black center point, and a red and orange spherical object with layered contours around a black center.
Artist's renderings compare the scale and appearance of a typical star (left, ~0.01 AU), a black hole accretion disk (center, ~1,000 AU), and a black hole star system detected by the James Webb Space Telescope (right, ~1,000 AU). The images illustrate how rapidly growing black holes in the early universe may have been surrounded by dense gas envelopes, helping explain the formation of supermassive black holes in the cosmic dawn. (Phys.org)
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Astronomers have long been puzzled by faint red objects detected in deep-space observations from the James Webb Space Telescope. A study published in Nature suggests these "little red dots" may be powered by a newly identified phenomenon called a "black hole star"—an early, rapidly growing black hole enveloped in dense gas.

Researchers at the Institute of Science and Technology Austria and international collaborators described the discovery in the Nature study released today. The object represents the earliest known example of its kind detected to date.

The finding may help explain a longstanding astronomical mystery: how billion-solar-mass black holes came to exist so soon after the Big Bang, when the universe was only in its infancy.

JWST Detects Earliest Known 'Black Hole Star' From Cosmic Dawn | Sama News Agency