When astronomers look deep into the early universe, the expectation is simple. You should see young galaxies still assembling ...
Black holes are among the most extreme objects in the universe, and now scientists can model them more accurately than ever before. By combining Einstein’s gravity with realistic behavior of light and ...
Astronomers were puzzled by a black hole around 50 million times the mass of the sun with no stars, spotted by the James Webb ...
Supermassive black holes spiral towards each other in this simulation created by NASA's Goddard Space Flight Center that shows how they glow in ultraviolet and X-ray light. The black holes are only 40 ...
QSO1. It lived just 700 million years after the Big Bang and already had a mass about 50 million times that of the Sun.
Nearly every galaxy has a supermassive black hole in its core. Whether the black hole forms first and then the galaxy around ...
The borderlands of black holes ought to be chaotic spaces where the rate at which matter is drawn across into oblivion is held back only by the blinding fury of radiation spilling away from the edge ...
New simulations suggest magnetic fields hold the key to forming black holes that defy known mass limits. When powerful magnetic forces act on a collapsing, spinning star, they eject vast amounts of ...
In a new Physical Review Letters study, researchers have successfully followed a gravitational wave's complete journey from the infinite past to the infinite future as it encounters a black hole.
Cutting-edge supercomputer simulations reveal intricate processes around black holes, improving our understanding of ...
A new simulation could help solve one of astronomy’s longstanding mysteries—how supermassive black holes formed so rapidly—along with a new one: What are the James Webb Space Telescope’s (JWST) ...
A neutron star's final moments may spark violent starquakes, monster shock waves, and even a fleeting, never-before-seen object called a black hole pulsar. When you purchase through links on our site, ...