Monday, August 31, 2026

Astronomers Catch Black Hole Spewing Matter After Feeding

Artist impression of the binary black hole, Swift J1727.8−1613, with eruptions of jets emanating from the black hole. (Credit: John A. Paice & Noel Castro Segura et al, ‘SwiftJ1727 - Final - No Overlay – DonorJetClouds’, (2026))

Black holes are some of the most awe-inspiring and mysterious celestial objects in the universe. This is primarily because astronomers still don’t understand the underlying mechanisms that drive black holes, including its formation, evolution, and end. As their name implies, black holes can’t be viewed directly since they blend into the background of the vastness of space. Therefore, astronomers are limited to “seeing” black holes when they consume other celestial objects, most notably stars. When this happens, the astronomers see the light from the star being violently consumed by a nearby black hole in a spectacular display. However, astronomers are still puzzled regarding what happens after the consumption.



Quantum Physicist Takes Aim at the Universe's Mysterious Arrow of Time

Physicist Jim Al-Khalili is the author of "On Time: The Physics That Makes the Universe Tick." (Credits: Clockwork photo adapted from Dietmar Rabich / Wikimedia Commons / Dülmen, Heilig-Kreuz-Kirche, Uhrwerk -- 2019 -- 3054. Al-Khalili image: Princeton University Press. Created under CC BY-SA 4.0 license)

Scientists and philosophers have argued over the nature of time since … well, since time immemorial. Is time real, or is it a convenient illusion? Why does time seem to flow in just one direction? In a new book called “On Time,” British physicist Jim Al-Khalili lays out what he thinks is the answer to such questions.



Martian Astronomy: Percy Sees a ‘Phobos Eclipse’ From Mars

Perseverance sees Phobos cross in front of the Sun. Credit: NASA/JPL-Caltech/ASU/MSSS/SSI

Sure. It’s just another image of Phobos crossing the disk of the Sun, as seen from the surface of Mars. Like so much of the modern space era, these images, once amazing, are now almost routine. But there’s some real science behind tasking the Mars rovers to conduct a little ‘Martian astronomy.’



Sunday, August 30, 2026

ESA JUICE probe targets dark Jovian moon Kallichore in 2031

Artist's impression of the ESA JUICE spacecraft. (Credit: ESA)

The planet Jupiter hosts more than 100 moons with the majority of attention going to the four Galilean moons, Io, Europa, Ganymede, and Callisto. This is primarily due to their active geology, including Io being the most volcanically active planetary body in the solar system and Europa having a vast subsurface liquid water ocean beneath its icy crust. However, Jupiter’s smaller and lesser-known moons could provide astronomers key insights into the history of the solar system since they’ve remained largely unchanged, unlike the Galilean moons.



Gardening the Moon's Cosmic Archives

Kepler's Supernova scattered debris across space as its giant star ended in an explosion. Credit: NASA/CXC/SAO/DSS/D. Patnaude

When a meteoroid hits the Moon's surface, it does more than just dig up a little dirt. It actually excavates a little bit of cosmic history that recorded a long-ago supernova explosion. Scientists at the University of Hawaii Institute of Geophysics and Planetology have come up with a way to decode that history and learn something about such energetic events in the Universe.



Roman Rises! Five Things to Know About NASA's New Space Telescope

A SpaceX Falcon Heavy rocket rises from NASA's Kennedy Space Center in Florida, sending the Nancy Grace Roman Space Telescope into space. (NASA Photo / Joel Kowsky)

NASA's newest eye on the sky, the Nancy Grace Roman Space Telescope, has begun its journey to unravel the secrets of dark matter, dark energy and Earthlike planets — months ahead of schedule.



Ancient Dust Grains Hold Magnetic Clues to the Sun's Birth

Our early Solar System likely had embedded magnetic fields at work even before the Sun was born, according to a new study. Credit: Hernán Cañellas

Those little dust grains that fall to Earth during meteor showers or end up as part of larger meteorites found on Earth may hold surprising clues to the formation of the Sun. That's because they record the state of the magnetic field in the protostellar nebula from which Earth (and ultimately the planets) formed.