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Very Large Array

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Black holes' delayed radio burps decoded
space2 months ago

Black holes' delayed radio burps decoded

Scientists reveal that the delayed radio bursts from tidal disruption events (stars torn apart by supermassive black holes) occur when the black hole’s feeding rate is either too fast or too slow, ejecting gas that slams into surrounding material to produce radio emissions. By combining decades of VLA radio data with optical/UV and X-ray follow-ups for 31 well-tracked TDEs (from a larger sample of 91 candidates), researchers mapped the actual gas consumption over time and linked late flares to two feeding-rate extremes. A helium emission signature in early spectra also signals a delayed disk formation. The study suggests a two-to-six-year window after discovery to detect these late emissions and shows the mechanism works across vastly different black-hole masses, helping scientists optimize telescope time.

First-ever photo of stormy vortex at Uranus' north pole captured by NASA.
science-and-astronomy3 years ago

First-ever photo of stormy vortex at Uranus' north pole captured by NASA.

Astronomers using the Very Large Array (VLA) of radio telescopes in New Mexico have detected a vortex of relatively warm air swirling beneath Uranus' clouds, providing strong evidence for the existence of a cyclone anchored at the planet's north pole. Polar vortices seem to be a common trait of all planets with atmospheres, at least in our solar system. The discovery of a northern vortex on Uranus was made through the detection of thermal emission in the form of radio waves.

Radio Waves and Magnetic Fields Detected on Distant Exoplanets
science3 years ago

Radio Waves and Magnetic Fields Detected on Distant Exoplanets

The Very Large Array in New Mexico discovered radio waves coming from YZ Ceti B, a planet just 12 light years away from Earth. Scientists are interested in the planet because it might be the first outside our solar system with a protective magnetic field like Earth's. There are four Earth-sized planets in our solar system, and YZ Ceti B is too close to its sun to expect to find life, but could open the door for more research. The discovery raises the question of whether Earth is a common type of planet.

Unraveling the Core of a Distant Galaxy Cluster through Radio Signals
science-and-astronomy3 years ago

Unraveling the Core of a Distant Galaxy Cluster through Radio Signals

Astronomers investigating an anomalous radio emission from the galactic cluster Abell 1213 have discovered that it may come from the 1.66 million light-year-long radio tail of its dominating central galaxy, 4C29.41. The team also found evidence of mergers between galaxies in the cluster, which is located around 647 million light-years from Earth. The radio emission is not a radio halo, but rather a radio relic, possibly caused by a past galactic merger. The cluster's core has an intricate substructure, and star-forming galaxies are not restricted to the edges of Abell 1213.