Universe Today
White Dwarfs Eat More Planetary Debris Than Thought, But Magnetic Fields Hide It
Planetary debris disks around white dwarfs appear to be more plentiful than thought. That's because some white dwarfs are magnetic, and those magnetic fields create patches of metallic debris near the stars' poles, where it's more difficult to detect. This leads to an underestimation of debris, something new research is trying to correct.
Probing Binary Stars in the Small Magellanic Cloud with the JWST
Astronomers want to know how universal the initial mass fraction (IMF) of galaxies is. To do they that, they need to discern binary stars in other galaxies, a difficult task. Researchers used the JWST to study the Small Magellanic Cloud and determine how many binary stars are there, since they can confuse measurements of the IMF.
ESCAPADE Images Earth and Moon From Its Temporary Home
Sometimes, you have embark on a journey to appreciate home. The Escape and Plasma Acceleration and Dynamics Explorers (ESCAPADE) mission recently gave us just such a view of our homeworld and our large natural satellite, as seen from the spacecrafts’ temporary orbit around the Sun-Earth L2 Lagrange point.
A Wandering Black Hole Meets a Wandering Star
What happens when a black hole and a star meet in the middle of nowhere in a galaxy? It sounds like it could be a dramatic science fiction backdrop, with some hapless starship caught in the crunch. Actually, such encounters in real life are pretty rare. They happen maybe once every 100,000 years. But, when they do occur, the immense gravity of the supermassive black hole tears the star apart. It's an eerie-looking process. The star gets "spaghettified" — that is, pulled on one side by the black hole. That rips out a stream of gas from the star which eventually forms a disk around the black hole.
Samples of Lunar Rock Are Leading Scientists to Rethink the Moon's History
Based on a new analysis of the Chang'e-6 lunar samples, scientists are again questioning the timing and intensity of the Late Heavy Bombardment period.
Astrobiology Offers Crucial Window Onto Earth’s Distant Past And Future
The search for extrasolar rocky planets circling other stars is more than mere science. It offers researchers a chance to gain crucial insight into how our own planet functions.
Galaxy Mergers May Not Stifle Star Formation After All, According to Illustris TNG
In recent years, the idea that galaxy mergers are responsible for quenching galaxies has grown in importance. This paradigm says that galaxies merge, their black holes form a powerful quasar, and that quasar stifles star formation. But new results from the IllustrisTNG simulations shows that this paradigm may not be accurate.
A Distant Primordial Object May Be a Newborn Little Red Dot
Little Red Dots are among the most intriguing discoveries made to date by the infrared-sensitive James Webb Space Telescope (JWST). They are distant, small objects that appear red in the JWST observations and they've only been known since 2024. More than 300 of them have been found as part of JWST's infrared surveys of the early Universe.
Into Totality: Our Guide to the August 12th Total Solar Eclipse
Where will you be on August 12th? Many an eclipse chaser and the ‘eclipse curious’ will make the journey to stand in the Moon’s shadow on that fast-approaching Wednesday date. This unique eclipse sees the pencil-thin shadow of our Moon curl around the Earth’s pole, before arcing across Greenland, Iceland and the Iberian peninsula towards a dramatic sunset over the western Mediterranean.
Martian Space Suits Will Need To Be 40% Lighter
Long before a human ever sets foot on the Red Planet, we already know how hard the environment is. Once one finally does, the only things protecting them from that harsh environment will be the infrastructure we’ve built up there, and the spacesuit that keeps that in a protective bubble. Unfortunately, modern space suits aren’t built with Martian gravity, which is 3/8ths of Earth’s, in mind. To prove that point, a team of NASA and industry engineers made a presentation at the 55th International Conference on Environmental Systems (ICES) that showed that the newest generation of spacesuits are simply too heavy to use on Mars.
JWST Could Spot Volcanic "Exo-Ios" Around Super-Jupiters
Jupiter’s moon, Io, is the most volcanically active planetary body in the solar system, boasting hundreds of active volcanoes spewing molten lava into space. This occurs from a process called tidal heating where Jupiter’s massive gravity constantly stretches and compresses the much smaller moon during the latter’s non-circular orbit. However, a lesser-known fact is that Io’s volcanic gases fuel Jupiter’s aurorae by traveling along Jupiter’s magnetic field lines, resulting in Jupiter’s bright aurorae observed by spacecraft and Earth-based telescopes. But what if this same phenomenon could be used to detect Io-like exomoons, also called exo-Ios, orbiting Jupiter-like exoplanets?
Chang'e-6 Samples Provide an Ancient Record of the Moon's Far Side.
The samples returned by the Chang'e-6 mission from the far side of the Moon reveal that the two hemispheres have had rather different experiences when it comes to space weather.
Little Red Dots Could Be Ancient Globular Clusters, Each Dominated by a Super-Massive Star
Little Red Dots are one of the mysteries uncovered by the JWST. Astronomers have been trying to figure out what they are, and have come up with multiple possibilities. New research says they could be ancient Globular Clusters with supermassive stars in their centers.
How NASA Plans to Build the Habitable Worlds Observatory
We’ve been covering the journey of the Habitable Worlds Observatory for some time now. Over the past few years, it's gone from a proposal to a relatively fleshed-out plan for how and what the next Great Observatory should do—in this case, look at and characterize potentially habitable exoplanets. Back in August 2024, NASA set up the HWO Technology Maturation Project Office (TMPO) to coordinate the technological and scientific development needed to make the mission a success. They recently released a comprehensive plan for the first steps of that process in pre-print form on arXiv, and it’s very clear on what needs to happen before the Mission Concept Review (MCR) at the end of the decade.
Black Hole Collisions Tell a Tale of Repeating Mergers
A black hole merger is one of the Universe's most energetic and massive events. During such a collision, two black holes orbit closer and closer until they collide and become a much more massive black hole. The event also gives off radiation and, as it happens, gravitational waves. They help tell the story of the two objects involved in the collision.
New Research Shows How Clouds Shape the Interiors of sub-Neptunes
Scientists at ASU's School of Earth and Space Exploration have demonstrated how clouds in a sub-Neptune's atmosphere shape the interior structure of the planet.
UCF Researchers Are Developing Tools to Help Find Habitable Planets
Through the Photonics-Enabled Exoplanet Spectroscopic System (PEEPSS) program, researchers are developing a technology that will assist NASA's planned Habitable World's Observatory (HWO).
Are Aliens Harvesting the Spin of Stars?
One of the challenges of searching for “technosignatures” (i.e. signs that intelligent life somewhere in the universe has created technology) is understanding what to look for. Technology is a very broad area, and different types would show up as different features. One of the most commonly cited is a Dyson sphere, which attempts to encapsulate a star and capture it’s outgoing light to produce energy. But while we’ve looked for the mid-infrared waste heat these structures would produce for decades, we haven’t found a definitive instance of one. According to a new paper, available in pre-print on arXiv by Turkish high school student Sahin Torlakcik, that might be because we are looking for the wrong type of energy all together.
JWST May Be Missing Water Hidden Deep Within Mini-Neptune Worlds
Sub-Neptune exoplanets, exoplanets that are slightly smaller than Neptune, have been designated as the most common type of planet in the Milky Way Galaxy based on their vast discovery numbers, totaling almost 3,300 out of the more than 6,300 confirmed exoplanets to date. Despite these numbers, the characteristics of sub-Neptunes remain relatively unknown. This is primarily due to our own solar system not having its own sub-Neptune to use as an analog, along with their atmospheres being thick and hazy. As a result, this makes telescopic observations, even from powerful instruments like NASA’s James Webb Space Telescope, extremely difficult.
Could We Send a Spacecraft to a Black Hole?
Black holes represent some of the most extreme environments in the universe. They’re the sources of the strongest consistent gravitational fields, which allows us to test Einstein’s Theory of General Relativity to an extent that’s impossible with small objects. But we’re also reaching our limit of what we can learn about one remotely. So various authors have put forward ideas for how we might eventually send a probe directly to a black hole to observe it up close. One of the most vocal of those authors is Cosimo Bambi of Fudan University in Shanghai - and he recently released a paper, available in pre-print on arXiv, about what it would take for us to send a gram-size probe to a nearby black hole.
