Astronomy and Planetary Science Thread

Here's an interesting video about how the The impact-event effected Earth:


Check out our first follow-up from a couple weeks ago:
Answering Your Questions About Earth’s Oldest Rocks: • Answering Your Questions About Earth’s Old... https://www.youtube.com/watch?v=ag8vaHd3Mik
Check out our previous conversations that inspired these follow-up videos:
Part 1 - The Tortured History of Earth's Oldest Rocks: • The Tortured History of Earth's Oldest Roc... https://www.youtube.com/watch?v=Yo59xUP-e4k
Part 2 - What Earth’s Oldest Rocks Tell Us About The First Oceans, Life, & Tectonics: • What Earth’s Oldest Rocks Tell Us About Th... https://www.youtube.com/watch?v=t7xi1UnBsAE
Check out the other videos I mentioned in this conversation:
Is There a Reason Earth is The Only Planet With Both Plate Tectonics & Life? • Is There a Reason Earth is The Only Planet... https://www.youtube.com/watch?v=Mj2MRqAhAjs
How Life Drives Mountain Building on Earth & What This Means for Space Exploration: • How Life Drives Mountain Building on Earth... https://www.youtube.com/watch?v=hgZnfrJGpW8
GEO GIRL Website: https://www.geogirlscience.com/ (visit my website to see all my courses, shop merch, learn more about me, & donate to support the channel if you'd like!)
0:00 Intro
1:05 Did the Moon-forming impact cause plate tectonics?
4:07 Did this impact trigger mantle convection?
5:27 Why didn't the moon evolve plate tectonics?
8:23 It was a planetary 'reset'
9:25 So did this impact change anything?
11:32 What's older- The Moon or Earth?
15:53 What was larger- Proto-Earth or Theia?
16:48 Chemical differences between Earth & The Moon?
19:05 Young Moon vs Old Moon Hypotheses
22:29 What did Earth look like before moon-forming impact?
24:13 Why does the Moon not have a thicker atmosphere?
24:56 When did Earth's magnetic field form?
26:03 Did The Moon have a magnetic field?
26:47 When did oceans evolve on Earth?
28:46 Was there a global ocean?
31:33 Did the moon-forming impact spark life on Earth?
32:40 Link between Plate Tectonics, Oxygen, & Life?
38:27 Impacts other than the moon-forming one? Bombardment?
42:45 Did early impacts triggered the origin of life?
44:25 Other hypotheses for how the Moon formed?
46:38 BIF Follow-Up?
47:22 Comment Your Questions for More Follow-Ups!

I've always found Dr. Rachel Phillips (GEO GIRL) videos to be interesting and informative on issues concerning geology.
 
The Radio Signal That Predicts Aurora Storms

Scientists have discovered a crucial clue to understanding one of nature's most spectacular light shows, the aurora. Research from the University of Southampton reveals that just before these magnetospheric substorms erupt, a distinct pattern of low frequency radio waves appears above the aurora, radio emissions that surge in strength precisely as mysterious "auroral beads" transform into full storms. This radio signature, detected by spacecraft and ground observatories across multiple events, provides the first direct evidence of the physical processes triggering these dramatic celestial displays, and may explain similar phenomena occurring in the magnetospheres of Jupiter and Saturn

https://www.universetoday.com/articles/the-radio-signal-that-predicts-aurora-storms
 
NASA’s MAVEN (Mars Atmosphere and Volatile EvolutioN) mission team, in partnership with the agency’s Deep Space Network, continues recovery activities after losing contact with the spacecraft on Dec. 6. To date, attempts to reestablish contact with the spacecraft have not been successful.

Although no spacecraft telemetry has been received since Dec. 4, the team recovered a brief fragment of tracking data from Dec. 6 as part of an ongoing radio science campaign. Analysis of that signal suggests that the MAVEN spacecraft was rotating in an unexpected manner when it emerged from behind Mars. Further, the frequency of the tracking signal suggests MAVEN’s orbit trajectory may have changed. The team continues to analyze tracking data to understand the most likely scenarios leading to the loss of signal. Efforts to reestablish contact with MAVEN also continue.

NASA is also working to mitigate the effect of the MAVEN anomaly on surface operations for NASA’s Perseverance and Curiosity rovers. Four orbiters at Mars, including MAVEN, relay communications to and from the surface to support rover operations. NASA’s Mars Reconnaissance Orbiter, Mars Odyssey, and ESA’s (European Space Agency’s) ExoMars Trace Gas Orbiter all remain operational. For the next two weeks of scheduled surface operations, NASA is arranging additional passes from the remaining orbiters, and the Perseverance and Curiosity teams have adjusted their daily planning activities to continue their science missions.
https://science.nasa.gov/blogs/maven/2025/12/15/nasa-continues-maven-spacecraft-recontact-efforts/
 
Massive newborn star is firing two plasma jets at once

A newborn star 15,000 light-years from Earth is fascinating astronomers with its dual blasts of superheated plasma jets. The rare sight captured in stunning detail by the James Webb Space Telescope (JWST) isn’t only a display of cosmic forces. It’s helping solve a decades’ long debate about the origins of massive stellar objects.

https://www.popsci.com/science/newborn-star-plasma-jets/
 
Issac Arthur look on exotic chemistry of Alien Worlds

View: https://www.youtube.com/watch?v=Tf0AzvDrfE4

Chapters
0:00 Intro
3:23 What we’ll Explore
5:11 Boron Biochemistry
13:54 Ammonia Worlds
42:01 Sulfur Worlds
46:37 Silicon-Based Life
1:08:08 Phosphorus Life
1:17:25 Crystal Aliens
1:38:40 Fluorine Life
1:45:56 Void Ecology (it live in vacuum of space)
2:09:37 Methane Worlds
2:35:17 Closing Thoughts
Bonus Higher Dimensional Aliens
View: https://www.youtube.com/watch?v=y2i3kZVcG5s
 
Record-Breaking Cosmic Burst Caused by Stellar-Mass Black Hole Shredding Its Companion

Using data gathered by a suite of space- and ground-based telescopes, astronomers have discovered AT 2024wpp, the most luminous fast blue optical transient (LFBOT) ever observed. These rare, brief, and intensely bright outbursts have puzzled scientists for a decade, but the extreme brightness and detailed multiwavelength data from AT 2024wpp show that they cannot be explained by any kind of normal stellar explosion such as a supernova. Instead, the new observations indicate that AT 2024wpp was powered by an extreme tidal disruption event in which a black hole up to about 100 times the mass of the Sun tore apart a massive companion star in a matter of days, converting an extraordinary fraction of the star’s mass into energy.

https://www.sci.news/astronomy/most-luminous-fast-blue-optical-transient-14430.html
Related paper:

https://arxiv.org/abs/2509.00951
 
Saturn’s biggest moon might not have an ocean after all

Careful reanalysis of data from more than a decade ago indicates that Saturn’s biggest moon, Titan, does not have a vast ocean beneath its icy surface, as suggested previously. Instead, a journey below the frozen exterior likely involves more ice giving way to slushy tunnels and pockets of meltwater near the rocky core.

Data from NASA’s Cassini mission to Saturn initially led researchers to suspect a large ocean composed of liquid water under the ice on Titan. However, when they modeled the moon with an ocean, the results didn’t match the physical properties described by the data. A fresh look yielded new — slushier — results. The findings could spark similar inquiries into other worlds in the solar system, and help narrow the search for life on Titan.

“Instead of an open ocean like we have here on Earth, we’re probably looking at something more like Arctic sea ice or aquifers, which has implications for what type of life we might find, but also the availability of nutrients, energy and so on,” said Baptiste Journaux, a University of Washington assistant professor of Earth and space sciences.



“The discovery of a slushy layer on Titan also has exciting implications for the search for life beyond our solar system,” Jones said. “It expands the range of environments we might consider habitable.”

Although the notion of an ocean on Titan invigorated the search for life there, the researchers believe the new findings might improve the odds of finding it. Analyses indicate that the pockets of freshwater on Titan could reach 68 degrees Fahrenheit. Any available nutrients would be more concentrated in a small volume of water, compared to an open ocean, which could facilitate the growth of simple organisms.

While it is unlikely that the researchers discover fish wriggling through slushy channels, if life is found on Titan, it may resemble polar ecosystems on Earth.

https://www.eurekalert.org/news-releases/1109811
Related paper:

https://www.nature.com/articles/s41586-025-09818-x
 
NASA’s Webb Observes Exoplanet Whose Composition Defies Explanation [Dec 16]

Officially named PSR J2322-2650b, this Jupiter-mass object appears to have an exotic helium-and-carbon-dominated atmosphere unlike any ever seen before. Soot clouds likely float through the air, and deep within the planet, these carbon clouds can condense and form diamonds.

[...]

“This system is unique because we are able to view the planet illuminated by its host star, but not see the host star at all,” said Maya Beleznay, a third-year PhD candidate at Stanford University in California who worked on modeling the shape of the planet and the geometry of its orbit. “So we get a really pristine spectrum. And we can study this system in more detail than normal exoplanets.”

“The planet orbits a star that's completely bizarre — the mass of the Sun, but the size of a city,” said the University of Chicago’s Michael Zhang, the principal investigator on this study. “This is a new type of planet atmosphere that nobody has ever seen before. Instead of finding the normal molecules we expect to see on an exoplanet — like water, methane, and carbon dioxide — we saw molecular carbon, specifically C3 and C2.”

View: https://www.youtube.com/watch?v=oBf1GFkFjdc


This animation shows an exotic exoplanet orbiting a distant pulsar, or rapidly rotating neutron star with radio pulses. The planet, which orbits about 1 million miles away from the pulsar, is stretched into a lemon shape by the pulsar’s strong gravitational tides. NASA’s James Webb Space Telescope found that the planet’s atmospheric composition defies explanation. They detected molecular carbon, specifically C3 and C2, which would only be expected if there were almost no oxygen or nitrogen.

The pulsar’s characteristic radio beams wobble or precess as the pulsar spins because they are angled about 30 degrees from the pulsar’s spin axis. This animation is not to scale. The pulsar spins almost 300 times per second, while the planet orbits once every 7.8 hours.
 
Dark Matters, bright fusion?
https://phys.org/news/2025-12-bazinga-physicists-big-theory-problem.html
A professor at the University of Cincinnati and his colleagues have figured out something two of America's most famous fictional physicists couldn't: how to theoretically produce subatomic particles called axions in fusion reactors.

Particle physicists Sheldon Cooper and Leonard Hofstadter, roommates in the sitcom "The Big Bang Theory," worked on the problem in three episodes of Season 5, but couldn't crack it.

Now UC physics Professor Jure Zupan and his theoretical physicist co-authors at the Fermi National Laboratory, MIT and Technion–Israel Institute of Technology think they have one solution in a study published in the Journal of High Energy Physics.


In other news:
https://phys.org/news/2025-12-hubble-captures-rare-collision-nearby.htmlTwo distinct, violent collisions generated two luminous clouds of debris in the same planetary system. The discovery offers a unique real-time glimpse into the mechanisms of planet formation and the composition of materials that coalesce to form new worlds.

The study is published in the journal Science.


https://phys.org/news/2025-12-bent-complex-planetary-architectures.htmlA new piece of technology, the Nancy Grace Roman Space Telescope, is exciting scientists enough that they are even starting to predict what kind of discoveries it might make. One such type of discovery, described in a preprint paper on arXiv by Vito Saggese of the Italian National Institute for Astrophysics and his co-authors on the Roman Galactic Exoplanet Survey Project Infrastructure Team, is the discovery of many more multiplanetary exoplanet systems an astronomical phenomena Roman is well placed to detect—microlensing.

https://phys.org/news/2025-12-spherex-telescope-full-sky-infrared.html"It's incredible how much information SPHEREx has collected in just six months—information that will be especially valuable when used alongside our other missions' data to better understand our universe," said Shawn Domagal-Goldman, director of the Astrophysics Division at NASA Headquarters in Washington.

"We essentially have 102 new maps of the entire sky, each one in a different wavelength and containing unique information about the objects it sees
.

Now this last link might sound off-topic, but I am thinking the Breakthrough Starshot guys need to glom onto this:
https://phys.org/news/2025-12-private-donors-pledge-bn-cern.html
Perhaps if space advocates can also help fund this---just maybe they could get a Forward Starwisp pulse every so often?
https://www.centauri-dreams.org/2008/10/21/remembering-starwisp/
 
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Hubble sees asteroids colliding around nearby star​

In a historical milestone, astronomers using the NASA/ESA Hubble Space Telescope witnessed the catastrophic collisions in a nearby planetary system. As they observed the bright star Fomalhaut, scientists saw the impact of massive objects around the star. The Fomalhaut system appears to be in a dynamical upheaval, similar to what our Solar System experienced in its first few hundred million years after formation.
https://www.esa.int/Science_Explora...e_sees_asteroids_colliding_around_nearby_star
 
Anton Petrov has a video out about a bizarre connection between Mars, Milancovitch cycles and volcanoes:


0:00 Milankovitch cycles study
2:00 How these cycles work: eccentricity
3:00 Obliquity
3:40 Axial Precession
4:30 Additional mechanisms
5:30 Volcanic effects!
7:00 Martian effects
9:50 Mass of Mars is the main factor
10:20 Why this matters
12:50 Conclusions
 
Astrum has put out a video concerning the discovery of Eris:


This is Eris, the Pluto killer.
▀▀▀▀▀▀
In this video, we’re heading to the chaotic, murky edges of the solar system to meet the “tenth planet”, Eris. Also known as the “Pluto killer”, the discovery of this massive icy world didn't just add a name to the map, it triggered a scientific war that redefined what it means to be a planet, forever.​
.▀▀▀▀▀▀
0:00 The Tenth Planet
4:18 Redefining “Planet”
8:50 Eris’ Orbit
12:15 Eris’ Size
13:35 Eris’ Surface
15:02 Eris' Moon: Dysnomia
17:42 The Pluto Killer

▀▀▀▀▀▀▀▀▀▀▀▀
References:
“Eris: dwarf planet overview”, via nasa.gov https://astrumspace.info/eris
“The Discovery of Eris”, via arxiv.org https://astrumspace.info/erisdiscovery
“Controversy surrounding dwarf planet naming”, via newscientist.com https://astrumspace.info/haumeadisc
“IAU vote controversy over planet definition”, via bbc.co.uk https://astrumspace.info/iauvote
“What makes a planet?”, via ucla.edu https://astrumspace.info/planetdefini...
“Orbit and dynamical properties of Eris”, via nasa.gov https://astrumspace.info/erisorbit
“Eris’s unusually high Bond albedo”, via iopscience.iop.org https://astrumspace.info/erisalbedo
“Possible geothermal activity on Eris”, via arxiv.org https://astrumspace.info/erisgeothermal
“Discovery of Eris’s moon Dysnomia”, via caltech.edu https://astrumspace.info/dysnomia
“The Eris–Dysnomia binary system”, via arxiv.org https://astrumspace.info/erissystemhttps://www.youtube.com/redirect?ev...s://astrumspace.info/erissystem&v=MHsDI83dZ_s


▀▀▀▀▀▀
Credits:
Writer: Jess Jordan
Video Editor: Nick Shishkin
Researcher: Shourya Shrivastava
Script Editor: Damaris McColgan
Thumbnail Designer: Peter Sheppard
Publishing Lead: Georgina Brenner
Production Manager: Raquel Taylor
Edit Producer: Poppy Pinnock
Head of Astrum: Jess Jordan
Creator of Astrum: Alex McColgan

With special thanks to:
NASA/ESO/ESA
#Astrum #Space #Eris #DwarfPlanet
 
DIY
https://hackaday.com/2025/12/20/a-tiny-reflecting-telescope-for-portable-astronomy/
Earth-like
https://phys.org/news/2025-12-cosmic-rays-nearby-supernova-earth.htmlhttps://www.nanowerk.com/news2/space/newsid=68341.php
The Moon--Ceti Alpha V possible after all?
https://phys.org/news/2025-12-moon-event-explosive-ejection-giant.htmlAbout a decade ago, some researchers in the Netherlands and Russia thought it could. They proposed that lunar fission was assisted by a huge nuclear explosion occurring at the core-mantle boundary. With this explosive mechanism, the proto-Earth could have had a longer day of four to six hours and an angular momentum similar to that of the present Earth-moon system.

Or something a bit different?
https://link.springer.com/article/10.1007/s11631-025-00834-2
Look out
https://phys.org/news/2025-12-sn-2022ngb-faint-evolving-iib.htmlhttps://www.sciencenews.org/article/asteroid-moon-impact-2032-2024-yr4
View: https://m.youtube.com/shorts/c5vxY1JCEnI
 
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Massive Stars Make Their Mark in Hubble Image

https://www.nasa.gov/image-article/massive-stars-make-their-mark-in-hubble-image/
Clues to the origin of hot Jupiters hidden in their orbits

New research finds a distinct group of hot Jupiters whose circular orbits defy tidal-migration timescales, pointing to formation within protoplanetary disks.

https://www.eurekalert.org/news-releases/1109644
NASA’s Chandra Finds Small Galaxies May Buck the Black Hole Trend

https://www.nasa.gov/missions/chand...small-galaxies-may-buck-the-black-hole-trend/
 
SN 2022ngb is a faint and slow-evolving Type IIb supernova, observations reveal

An international team of astronomers has conducted optical and near-infrared observations of a supernova designated SN 2022ngb. As a result, it was found that SN 2022ngb is a faint and slow-evolving Type IIb supernova with a low-mass envelope.

https://phys.org/news/2025-12-sn-2022ngb-faint-evolving-iib.html
Related paper:

https://arxiv.org/abs/2512.09384
JWST Confirms: First Runaway Supermassive Black Hole Tearing Through Space

Now, for the first time, astronomers have confirmed a supermassive black hole at least 10 million times the mass of the Sun, somehow yeeted from its host galaxy at a jaw-dropping 954 kilometers (593 miles) per second – that's 0.32 percent of the speed of light.

https://www.sciencealert.com/jwst-c...supermassive-black-hole-tearing-through-space
Related paper:

https://arxiv.org/abs/2512.04166
 
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View: https://twitter.com/NASAJPL/status/2001732743265423568


NASA’s SPHEREx Observatory Completes First Cosmic Map Like No Other [Dec 18]

Launched in March, NASA’s SPHEREx space telescope has completed its first infrared map of the entire sky in 102 colors. While not visible to the human eye, these 102 infrared wavelengths of light are prevalent in the cosmos, and observing the entire sky this way enables scientists to answer big questions, including how a dramatic event that occurred in the first billionth of a trillionth of a trillionth of a second after the big bang influenced the 3D distribution of hundreds of millions of galaxies in our universe. In addition, scientists will use the data to study how galaxies have changed over the universe’s nearly 14 billion-year history and learn about the distribution of key ingredients for life in our own galaxy.

“It’s incredible how much information SPHEREx has collected in just six months — information that will be especially valuable when used alongside our other missions’ data to better understand our universe,” said Shawn Domagal-Goldman, director of the Astrophysics Division at NASA Headquarters in Washington. “We essentially have 102 new maps of the entire sky, each one in a different wavelength and containing unique information about the objects it sees. I think every astronomer is going to find something of value here, as NASA’s missions enable the world to answer fundamental questions about how the universe got its start, and how it changed to eventually create a home for us in it.”

Circling Earth about 14½ times a day, SPHEREx (which stands for Spectro-Photometer for the History of the Universe, Epoch of Reionization, and Ices Explorer) travels from north to south, passing over the poles. Each day it takes about 3,600 images along one circular strip of the sky, and as the days pass and the planet moves around the Sun, SPHEREx’s field of view shifts as well. After six months, the observatory has looked out into space in every direction, capturing the entire sky in 360 degrees.

Managed by NASA’s Jet Propulsion Laboratory in Southern California, the mission began mapping the sky in May and completed its first all-sky mosaic in December. It will complete three additional all-sky scans during its two-year primary mission, and merging those maps together will increase the sensitivity of the measurements. The entire dataset is freely available to scientists and the public.

“SPHEREx is a mid-sized astrophysics mission delivering big science,” said JPL Director Dave Gallagher. “It’s a phenomenal example of how we turn bold ideas into reality, and in doing so, unlock enormous potential for discovery.”

Superpowered telescope
Each of the 102 colors detected by SPHEREx represents a wavelength of infrared light, and each wavelength provides unique information about the galaxies, stars, planet-forming regions, and other cosmic features therein. For example, dense clouds of dust in our galaxy where stars and planets form radiate brightly in certain wavelengths but emit no light (and are therefore totally invisible) in others. The process of separating the light from a source into its component wavelengths is called spectroscopy.

And while a handful of previous missions has also mapped the entire sky, such as NASA’s Wide-field Infrared Survey Explorer, none have done so in nearly as many colors as SPHEREx. By contrast, NASA’s James Webb Space Telescope can do spectroscopy with significantly more wavelengths of light than SPHEREx, but with a field of view thousands of times smaller. The combination of colors and such a wide field of view is why SPHEREx is so powerful.

“The superpower of SPHEREx is that it captures the whole sky in 102 colors about every six months. That’s an amazing amount of information to gather in a short amount of time,” said Beth Fabinsky, the SPHEREx project manager at JPL. “I think this makes us the mantis shrimp of telescopes, because we have an amazing multicolor visual detection system and we can also see a very wide swath of our surroundings.”

To accomplish this feat, SPHEREx uses six detectors, each paired with a specially designed filter that contains a gradient of 17 colors. That means every image taken with those six detectors contains 102 colors (six times 17). It also means that every all-sky map that SPHEREx produces is really 102 maps, each in a different color.

The observatory will use those colors to measure the distance to hundreds of millions of galaxies. Though the positions of most of those galaxies have already been mapped in two dimensions by other observatories, SPHEREx’s map will be in 3D, enabling scientists to measure subtle variations in the way galaxies are clustered and distributed across the universe.

Those measurements will offer insights into an event that took place in the first billionth of a trillionth of a trillionth of a second after the big bang. In this moment, called inflation, the universe expanded by a trillion-trillionfold. Nothing like it has occurred in the universe since, and scientists want to understand it better. The SPHEREx mission’s approach is one way to help in that effort.

View: https://www.youtube.com/watch?v=kzTH_MXwRBs&list=PLTiv_XWHnOZrfLibq-Y1t8T0V3DnSYNph


View: https://www.youtube.com/watch?v=BFPHN4yOy2Y&list=PLTiv_XWHnOZrfLibq-Y1t8T0V3DnSYNph
 
Seems a bit desperate trying to image it with one of the rover’s on the surface of Mars.

NASA Works MAVEN Spacecraft Issue Ahead of Solar Conjunction [Dec 23]

NASA is continuing efforts to recontact its MAVEN (Mars Atmosphere and Volatile EvolutioN) spacecraft, which was last heard from on Dec. 6. In partnership with NASA’s Deep Space Network (DSN), the MAVEN team has sent commands for spacecraft recovery and is monitoring the network for a spacecraft signal.

The MAVEN team also continues to analyze tracking data fragments recovered from a Dec. 6 radio science campaign. This information is being used to create a timeline of possible events and identify likely root cause of the issue. As part of that effort, on Dec. 16 and 20, NASA’s Curiosity team used the rover’s Mastcam instrument in an attempt to image MAVEN’s reference orbit, but MAVEN was not detected. Additional analysis will continue, but planned monitoring will be affected by the upcoming solar conjunction.

Mars solar conjunction – a period when Mars and Earth are on opposite sides of the Sun – begins Monday, Dec. 29, and NASA will not have contact with any Mars missions until Friday, Jan. 16. Once the solar conjunction window is over, NASA plans to resume its efforts to reestablish communications with MAVEN.
 
The universe may be lopsided – new research

The shape of the universe is not something we often think about. But my colleagues and I have published a new study suggests it could be asymmetric or lopsided, meaning not the same in every direction.

Should we care about this? Well, today’s “standard cosmological model” – which describes the dynamics and structure of the entire cosmos – rests squarely on the assumption that it is isotropic (looks the same in all directions), and homogeneous when averaged on large scales.

But several so-called “tensions” – or disagreements in the data – pose challenges to this idea of a uniform universe.

We have just published a paper looking at one of the most significant of these tensions, called the cosmic dipole anomaly. We conclude that the cosmic dipole anomaly poses a serious challenge to the most widely accepted description of the universe, the standard cosmological model (also called the Lambda-CDM model).

https://theconversation.com/the-universe-may-be-lopsided-new-research-265256
Related paper:

https://journals.aps.org/rmp/abstract/10.1103/9ygx-z2yq
 
Breakthrough Listen observations of interstellar object 3I/ATLAS

On December 19, 2025, 3I/ATLAS reached its closest distance to Earth, at 1.7 AU (167 million miles). To obtain optimum sensitivity, we observed 3I/ATLAS with the largest steerable single-dish radio telescope in the world, the 100-meter Green Bank Telescope, less than 24 hours before the closest approach of 3I/ATLAS, on December 18, 2025. We used four receivers (L, S, C, and X) spanning frequencies of 1 - 12 GHz. At closest approach, the GBT is sensitive to transmitters with an EIRP of approximately 0.1 W, more sensitive than all previous observations. No artificial radio emission localized to 3I/ATLAS was detected.

In summary, 3I/ATLAS continues to behave as expected from natural astrophysical processes. That said, it remains an extremely interesting target for observation given the overall rarity of interstellar objects. We will continue to observe 3I/ATLAS as a part of a broader strategy to thoroughly investigate all interstellar objects, consistent with our goal of conducting humanity’s most sensitive, intensive and comprehensive search for technosignatures.

https://www.seti.org/news/breakthrough-listen-observations-of-interstellar-object-3iatlas/
 
Stardust study resets how life’s atoms spread through space

Starlight and stardust are not enough to drive the powerful winds of giant stars, transporting the building blocks of life through our galaxy. That’s the conclusion of a new study from Chalmers University of Technology, Sweden, of red giant star R Doradus. The result overturns a long-held idea about how the atoms needed for life are spread.

“We thought we had a good idea of how the process worked. It turns out we were wrong. For us as scientists, that’s the most exciting result”, says Theo Khouri, astronomer at Chalmers and joint leader of the study.

https://www.chalmers.se/en/current/...resets-how-life-s-atoms-spread-through-space/
 

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