Connect with us

Published

on

Recent discoveries indicate that the universe may harbour significantly more feeding supermassive black holes than previously estimated. These colossal entities, each with a mass ranging from millions to billions of times that of the Sun, are believed to be concealed by dense veils of gas and dust. This obscuration, researchers suggest, could hide nearly 30 percent to 50 percent of these actively feeding black holes, which remain undetected by standard telescopes due to their shrouded surroundings.

Obscuration from Supermassive Black Holes

The study, detailed in The Astrophysical Journal, examined the obscuration caused by material encircling supermassive black holes. As per a report by Space.com, this gas and dust often form a donut-like structure, obscuring their bright central regions from direct observation. Researchers working on the NuLANDS (NuSTAR Local AGN N H Distribution Survey) project employed infrared data from NASA’s NuSTAR spacecraft to locate these hidden cosmic giants. Peter Boorman, a researcher from the California Institute of Technology, highlighted during the American Astronomical Society meeting that the obscured black holes play a critical role in galaxy evolution.

According to reports, Boorman remarked during the presentation that black holes influence their host galaxies profoundly despite their relatively small size

Effects on Star Formation and Galactic Evolution

Jets of material emitted by these feeding black holes, travelling at speeds of up to one-third the speed of light, have been identified as disruptive forces in their host galaxies. By expelling essential gas and dust, these jets can inhibit or even halt star formation. Observations made using infrared surveys revealed that black holes hidden behind dust and gas emit detectable radiation, allowing their presence to be inferred.

Poshak Gandhi, a researcher from the University of Southampton, commented in an official press release from the university that many of these black holes were identified only through their re-emitted infrared radiation. These findings, researchers noted, are pivotal in understanding how black holes grow and influence the galaxies they inhabit, providing a deeper perspective on the mechanisms driving galactic evolution.

Continue Reading

Science

Comet C/2025 K1 (ATLAS) Breaks Into Three Pieces Following Close Approach to the Sun

Published

on

By

NASA’s fractured comet C/2025 K1 (ATLAS) dazzled stargazers on Monday night, offering a rare live view of a cosmic object breaking apart after a close encounter with the Sun. The livestream, organised by the Virtual Telescope Project, began at 10 p.m. EST on November 24 (0300 GMT on November 25) and will broadcast telescopic views of the comet’s multiple large fragmen…

Continue Reading

Science

James Webb Telescope May Have Discovered Universe’s Earliest Supermassive Black Hole

Published

on

By

James Webb may have discovered the universe’s earliest supermassive black hole in galaxy GHZ2. Observations reveal high-energy emission lines, challenging existing models of rapid black hole and galaxy growth. Upcoming JWST and ALMA studies aim to confirm AGN activity and refine our understanding of early cosmic evolution.

Continue Reading

Science

NASA’s Nancy Grace Roman Space Telescope Surpassing Expectations Even Before Launch, Reveals Research

Published

on

By

NASA’s upcoming Roman Space Telescope is expected to measure seismic waves in over 300,000 red giant stars, far greater than early predictions. These signals will help scientists better understand exoplanet systems and the Milky Way’s ancient core. Researchers say Roman’s natural survey design enables this breakthrough even before the telescope has launched.

Continue Reading

Trending