Tuesday, August 18, 2026

Even Near a Supermassive Black Hole, Stars Enrich the Interstellar Medium

The JWST used NIRCam and MIRI to capture this region near the Milky Way's SMBH. The star IRS 3 is in this field. It's an AGB star, and researchers are studying it to investigate the connection between material cast off from these types of stars and the interstellar medium. The researchers were surprised to find water and dust here, even though powerful radiation from the SMBH inhibit them. Image Credit: ESA/Webb, NASA & CSA, F. Peißker, J. Lu, F. Yusef-Zadeh, N. B. Sabha, C. Chan. Licence: CC BY 4.0 INT or ESA Standard Licence

Astronomers know that evolved AGB stars shed their outer layers, contributing to the makeup of the interstellar medium. But new JWST observations show this can happen even near a supermassive black hole, where powerful radiation could obliterate molecules.



Astronomers Finally See the Twisted Magnetic Fields That Drive Protostar Jets

This artist's illustration shows the twisted magnetic fields from a young protostar, which shape and propel the jets of gas emitted by the star. Decades ago, astrophysicists predicted that these twisted magnetic fields were responsible for launching and shaping these jets, now thanks to ALMA, they've detected them. Image Credit: NSF/AUI/NSF NRAO/M. Weiss

For decades, scientists have theorized that young protostar jets are shaped and driven by complex, twisted magnetic fields. But they couldn't detect them. Now, thanks to ALMA, they've found them around a young binary protostar.



Monday, August 17, 2026

Massive Exoplanets Could Form Around Supermassive Black Holes

This artist's illustration shows an active galactic nuclei with accretion disk and jets. New research says that under specific disk conditions, giant planets could form in the outer regions of the disk. So could black holes, including the elusive intermediate mass black holes. Image Credit: JAXA.

Black holes aren't just engines of inexorable destruction. They're complex regions of space and time, and under the right conditions, giant planets can form in their AGN disks.



NASA's SkyFall Mars Helicopters Will Feature a Revolutionary Antenna Design

An artist’s concept depicts the three SkyFall Mars helicopters collecting data while flying over the surface of the Red Planet. Credit: NASA/JPL-Caltech

Engineers developed a unique fabric-based design for a ground-penetrating radar that will be a key instrument on NASA’s SkyFall Mars helicopters. The hardware will enable the SkyFall mission’s trio of planetary rotorcraft to use ground-penetrating radar to study the Martian subsurface.



The JWST Little Red Dots Could Be 'Black Hole Stars'

New research proposes that the JWST's Little Red Dots, those puzzling objects from the early Universe, are objects the researchers have dubbed "Black Hole Stars." They're black holes, but instead of just an accretion ring, they're surrounded by a dense cocoon of gas that colours their light red. These could explain the SMBH found so early in the Universe by the JWST. Image Credit: Rohan Naidu (University of Hawai’i)

Little red dots have puzzled astronomers since their discovery in JWST data from the Universe’s deep past. Their ‘powering engines’ might resemble a newly discovered phenomenon dubbed a “black hole star”—an early, rapidly growing black hole wrapped in dense gas. This object, described in a study published today in Nature by researchers at the Institute of Science and Technology Austria (ISTA) and international collaborators, may help explain how billion-solar-mass black holes formed so soon after the Big Bang.



Nuking An Asteroid on Short Notice Could Save Us

Artist's concept of the DART satellite. Credit - NASA / JHU APL

Readers of a certain age will remember a golden area of asteroid films, capstoned by two with very different endings. Deep Impact engrained the devastating consequences of letting a large piece of rock hit our planet, whereas Armageddon, though arguably the more kitschy of the two films, was an uplifting story about technical ingenuity and sacrifice. And now, the central crux of that movie’s storyline - essentially blasting an asteroid with a nuclear detonation - is taking center stage as our last line of defense against a potential Deep Impact scenario. A new paper from researchers at the China Academy of Launch Vehicle Technology, and published in Space: Science & Technology, describes two potential scenarios examining how we might actually be able to nuke a space rock - and whether it would actually save us.



What Can We Actually Find on an Exoplanet? Part 1: The Atmospheric Fingerprint

The Pale Blue Dot: Earth photographed by Voyager 1 from six billion kilometers away in 1990. Everything we are is in that single point of light. Credit: NASA/JPL-Caltech (public domain).

If an alien civilization could see Earth only as a single pale blue dot, what could they learn? We start with transit spectroscopy, the biosignature cocktail of oxygen, methane, ozone, and water, and why even the James Webb will struggle to find life.