Wednesday, October 7, 2026

Thousands of Black Holes Could Be Lurking in Our Backyard—and You Can Help Find Them

Illustration of an isolated black hole floating through the Milky Way. Credit - FECYT, IAC

According to stellar evolution models, there should be hundreds of millions of black holes floating around in our galaxy. But so far we’ve only found 70. That’s in large part because they are so hard to find, but a citizen science project from the University of Southampton is actively seeking out these hidden monsters with the help of tens of thousands of amateur astronomers through a project on Zooniverse called [Black Hole Hunters](https://ift.tt/ZOwzmjg).



Tuesday, October 6, 2026

Wandering Black Holes May Hold Clues to the Evolution of the Universe

Artist’s impression of the wandering black hole population in a galaxy. Credit: ESA/Hubble, N. Bartmann

According to new research, "wandering" black holes may have left an imprint on the Universe as they traveled for billions of years.



Galaxy Evolution Can be Affected by Black Hole Jets

Artist’s illustration of a supermassive black hole at the center of a radio galaxy launching powerful jets all the way out the galaxy’s circumgalactic medium. Credit: Hailey Nelson/ Arizona State University

In recent decades, astronomers have found evidence that supermassive black holes can really mess with their galaxies' evolution. They gobble up material intended for star formation, quenching the birth of stars. Conversely, jets streaming away from those hungry monsters can also energize gas-rich regions and enhance the chances of a galaxy birthing batches of stars in those areas.



To Keep GPS Constellations From Drifting, Look To The Moon

Depiction of how Earth and Lunar satellite cant cross-correct their positioning. Credit - Satellite Navigation

Global Positioning Systems are a key feature in everyday life for much of the world’s population. Whether it’s ensuring a ship delivers its goods safely, or you’re able to avoid a road closure on your commute home, GPS can help. But the system has a weakness - it relies on ground stations that could suffer from blackouts, natural disasters, or cyber attacks. And if those ground stations go offline for long enough, the whole system itself can begin to “drift”. Aerospace engineers have been attempting to counteract this problem for years, but so far with little success. But a new paper from a research team led by Xia Lin and Baojun Lin at the Shanghai Engineering Center for Microsatellites, and published in Satellite Navigation, explains a potential answer to this problem - link the GPS satellites up with some in orbit around the Moon.



A Buried Volcano on the Moon Hints At An Ancient Lunar Dynamo

Image of the Dewar region of the Moon from the Lunar Reconaissance Orbiter. Credit - NASA / LROC

Scientists know for certain the moon doesn’t currently have a magnetosphere. But they’ve been debating for decades about whether it ever did. Data from both Apollo samples and orbital scientific instruments have proven divisive, and so the debate still rages. But a new paper from researchers at ETH Zurich, DLR, and the Institute of Applied Geosciences hopes to resolve the debate once and for all - by definitively proving that the Moon did, indeed, once have a magnetic dynamo.



Monday, October 5, 2026

New Simulations Connect the First Galaxies to the Universe We See Today

Webb’s First Deep Field provides the deepest and sharpest infrared image of the distant Universe to date. Credit: NASA/ESA/CSA/STScI

In a recent study, researchers at the international MEGATRON project used some of the most detailed simulations of the early Universe to investigate how the first stars and galaxies formed.



Neutrons, Rotating Black Holes, and a Galactic PeVatron at the Center of the Milky Way

In this artist's conception, the black hole at the center of our galaxy is surrounded by a hot disk of accreting material. Blue lines trace magnetic fields. Credit: M. Weiss / Harvard-Smithsonian Center for Astrophysics

Supermassive black holes generate tremendous amounts of energy through their accretion disks and jets. But they can also generate energy through the magnetic Penrose process. A new study looks at how we might observe this process through multimessenger astronomy.