Astronomy and Planetary Science Thread

Molecules found in Martian rock hint at ancient life – new study

A new study of carbon-based molecules in a Martian rock offers new hints about the possibility that the red planet once hosted life.

The researchers considered a range of possible processes that could have produced the molecules they found. They argue that high concentrations of large organic (carbon-based) compounds found in the rock cannot be fully explained by the non-biological processes they examined.

The team members say it is therefore possible that the organics were produced by living organisms. It is also feasible that molecules made by hydrothermal processes – where water is heated to high temperatures underground – also contributed to the organics found in the rock.

The scientists also believe that some of the organic compounds came from fatty acids, which are found in the cell walls of living organisms.

The complexity of the newly detected molecules is strikingly distinct. They require more complex methods for production, which helps scientists narrow down their source.

https://theconversation.com/molecules-found-in-martian-rock-hint-at-ancient-life-new-study-276241
 
New tools
https://phys.org/news/2026-02-physicists-method-universe-expansion.htmla team of astrophysicists, cosmologists, and physicists at The Grainger College of Engineering at the University of Illinois Urbana-Champaign and at the University of Chicago has developed a novel way to compute the Hubble constant using gravitational waves—tiny ripples in the spacetime fabric. The researchers were able to improve upon the accuracy of prior gravitational-wave methods of measuring the Hubble constant. As our capability to observe gravitational waves improves in the future, this new method can be used to make even more accurate measurements of the Hubble constant, bringing scientists closer to resolving the Hubble tension.

Illinois Physics Professor Nicolás Yunes said, "This result is very significant—it's important to obtain an independent measurement of the Hubble constant to resolve the current Hubble tension. Our method is an innovative way to enhance the accuracy of Hubble constant inferences using gravitational waves." Yunes is the founding director of the Illinois Center for Advanced Studies of the Universe (ICASU) on the Urbana campus.


Fink
https://phys.org/news/2026-02-closer-stars-fink-french-tool.htmlThanks to Fink, a software package created by two CNRS engineers, it is now possible to track millions of transient celestial phenomena observed in the sky by the Vera C. Rubin Observatory in Chile, in real time and with unprecedented precision. Minutes after each image is taken, Fink receives, processes, enriches, and cross-references the data with existing datasets. This allows even the faintest variations in detected light to be characterized with remarkable accuracy. The data is then stored, classified, and shared with users—scientists and astronomy enthusiasts—in a concise and targeted manner.

Odd
https://www.telegraph.co.uk/news/2026/02/23/i-research-space-for-a-living-i-believe-aliens-exist/
View: https://m.youtube.com/watch?v=MFsqerfhyzM


Snowmen
https://nautil.us/why-this-region-of-space-appears-to-be-populated-by-snowmen-1269957/
 
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NASA’s Curiosity Rover Sees Martian ‘Spiderwebs’ Up Close

A hilly landscape that looks like spiderwebs when viewed from orbit holds clues to the history of water on ancient Mars.

For about six months, NASA’s Curiosity Mars rover has been exploring a region full of geologic formations called boxwork, low ridges standing roughly 3 to 6 feet (1 to 2 meters) tall with sandy hollows in between. Crisscrossing the surface for miles, the formations suggest ancient groundwater flowed on this part of the Red Planet later than scientists expected. This possibility raises new questions about how long microbial life could have survived on Mars billions of years ago, before rivers and lakes dried up and left a freezing desert world behind.....

https://www.jpl.nasa.gov/news/nasas-curiosity-rover-sees-martian-spiderwebs-up-close/
Actual 170 meg PNG file here
https://assets.science.nasa.gov/content/dam/science/psd/photojournal/pia/pia26/pia26693/PIA26693.png
 
NASA’s Parker Solar Probe Spies Solar Wind ‘U-Turn’ [Dec. 11]

Images captured by NASA’s Parker Solar Probe as the spacecraft made its record-breaking closest approach to the Sun in December 2024 have now revealed new details about how solar magnetic fields responsible for space weather escape from the Sun — and how sometimes they don’t.

Like a toddler, our Sun occasionally has disruptive outbursts. But instead of throwing a fit, the Sun spews magnetized material and hazardous high-energy particles that drive space weather as they travel across the solar system. These outbursts can impact our daily lives, from disrupting technologies like GPS to triggering power outages, and they can also imperil voyaging astronauts and spacecraft. Understanding how these solar outbursts, called coronal mass ejections (CMEs), occur and where they are headed is essential to predicting and preparing for their impacts at Earth, the Moon, and Mars.

Images taken by Parker Solar Probe in December 2024, and published Thursday in the Astrophysical Journal Letters, have revealed that not all magnetic material in a CME escapes the Sun — some makes it back, changing the shape of the solar atmosphere in subtle, but significant, ways that can set the course of the next CME exploding from the Sun. These findings have far-reaching implications for understanding how the CME-driven release of magnetic fields affects not only the planets, but the Sun itself.

“These breathtaking images are some of the closest ever taken to the Sun and they’re expanding what we know about our closest star,” said Joe Westlake, heliophysics division director at NASA Headquarters in Washington. “The insights we gain from these images are an important part of understanding and predicting how space weather moves through the solar system, especially for mission planning that ensures the safety of our Artemis astronauts traveling beyond the protective shield of our atmosphere.”

Parker Solar Probe reveals solar recycling in action
As Parker Solar Probe swept through the Sun’s atmosphere on Dec. 24, 2024, just 3.8 million miles from the solar surface, its Wide-Field Imager for Solar Probe, or WISPR, observed a CME erupt from the Sun. In the CME’s wake, elongated blobs of solar material were seen falling back toward the Sun.

This type of feature, called “inflows”, has previously been seen from a distance by other NASA missions including SOHO (Solar and Heliospheric Observatory, a joint mission with ESA, the European Space Agency) and STEREO (Solar Terrestrial Relations Observatory). But Parker Solar Probe’s extreme close-up view from within the solar atmosphere reveals details of material falling back toward the Sun and on scales never seen before.

“We’ve previously seen hints that material can fall back into the Sun this way, but to see it with this clarity is amazing,” said Nour Rawafi, the project scientist for Parker Solar Probe at the Johns Hopkins Applied Physics Laboratory, which designed, built, and operates the spacecraft in Laurel, Maryland. “This is a really fascinating, eye-opening glimpse into how the Sun continuously recycles its coronal magnetic fields and material.”

Insights on inflows
For the first time, the high-resolution images from Parker Solar Probe allowed scientists to make precise measurements about the inflow process, such as the speed and size of the blobs of material pulled back into the Sun. These previously hidden details provide scientists with new insights into the physical mechanisms that reconfigure the solar atmosphere.

The CMEs are often triggered by twisted magnetic field lines that explosively snap and realign in a process called magnetic reconnection. This magnetic explosion kicks out a burst of charged particles and magnetic fields — a CME.

As the CME travels outward from the Sun, it expands, in some cases causing nearby magnetic field lines to tear apart like the threads of an old piece of cloth pulled too tight. The torn magnetic field quickly mends itself, creating separate magnetic loops. Some of the loops travel outward from the Sun, and others stitch back to the Sun, forming inflows.

“It turns out, some of the magnetic field released with the CME does not escape as we would expect,” said Angelos Vourlidas, WISPR project scientist and researcher at Johns Hopkins Applied Physics Laboratory. “It actually lingers for a while and eventually returns to the Sun to be recycled, reshaping the solar atmosphere in subtle ways.”

An important result of this magnetic recycling is that as the inflows contract back into the Sun, they drag down blobs of nearby solar material and ultimately affect the magnetic fields swirling beneath. This interaction reconfigures the solar magnetic landscape, potentially altering the trajectories of subsequent CMEs that may emerge from the region.

“The magnetic reconfiguration caused by inflows may be enough to point a secondary CME a few degrees in a different direction,” Vourlidas said. “That’s enough to be the difference between a CME crashing into Mars versus sweeping by the planet with no or little effects.”

Scientists are using the new findings to improve their models of space weather and the Sun’s complex magnetic environment. Ultimately, this work may help scientists better predict the impact of space weather across the solar system on longer timescales than currently possible.

“Eventually, with more and more passes by the Sun, Parker Solar Probe will help us be able to continue building the big picture of the Sun’s magnetic fields and how they can affect us,” Rawafi said. “And as the Sun transitions from solar maximum toward minimum, the scenes we’ll witness may be even more dramatic.”

NASA’s Parker Solar Probe Observes Interstellar Comet 3I/ATLAS [Dec. 19]

NASA’s Parker Solar Probe observed interstellar comet 3I/ATLAS from Oct. 18 to Nov. 5, 2025, with its WISPR (Wide-Field Imager for Solar Probe) instrument. The spacecraft snapped around 10 images of the comet per day. During this period, Parker Solar Probe was speeding away from the Sun following its 25th solar flyby on Sept. 15.

In these initial images — which still need to go through final calibration and processing — the comet can be seen heading behind the Sun from Parker’s point of view. At the time, the comet was near its closest point to the Sun, at a distance of about 130 million miles, placing it just outside the orbit of Mars. The images offer a valuable look at the comet over a period when it couldn’t be seen from Earth because it appeared too close to the Sun from Earth’s perspective.

The WISPR team is continuing to process the data to remove stray sunlight and compensate for exposure times, which differed between the images, causing the comet to appear as if it changed brightness. The final images will ultimately help scientists better study this interstellar visitor.

Comet 3I/ATLAS was discovered by the NASA-funded ATLAS (Asteroid Terrestrial-impact Last Alert System) survey telescope in Rio Hurtado, Chile, in July. It is the third known object originating from outside our solar system discovered passing through our solar neighborhood. Comet 3I/ATLAS was also seen by other NASA heliophysics missions including PUNCH, STEREO, and SOHO.
 
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Astrum has a new video out concerning Uranus's nature:


New discoveries about Uranus reveal something surprising hidden inside its core.
!▀▀▀▀▀▀
A rare alignment is approaching, offering a fresh opportunity to study Uranus. Although only visited once by Voyager 2, cutting-edge telescopes and modern data methods mean new discoveries are still pouring in. So what is really hiding beneath the clouds of this mysterious pale blue giant?​
▀▀▀▀▀▀
0:00 Uranus Update
4:10 Ice Giant or Rock Giant?
6:44 Uranus’s Bizarre Storms
11:05 Coldest Planet?
13:03 Protoplanet Collision
14:39 Corkscrew Magneto-tail
17:24 New Moons
19:19 Bullseye Rings
20:57 2025 Occultation

▀▀▀▀▀▀

References:Uranus Facts”, via science.nasa.gov https://astrumspace.info/uranusfacts
“Icy or Rocky? Convective or Stable?”, via arxiv.org https://astrumspace.info/uranusinterior
“Record-Breaking Storm Activity on Uranus in 2014”, via adsabs.harvard.edu https://astrumspace.info/uranusstorms
“20-Year Hubble Study of Uranus Yields New Atmospheric Insights”, via science.nasa.gov https://astrumspace.info/hubbleuranus
“Solar Wind Heating for Uranus: Decades-Long Mystery Solved”, via imperial.ac.uk https://astrumspace.info/uranussolarwind
“The Energy Balance of Uranus”, via academic.oup.com https://astrumspace.info/uranusenergy
“Giant Impact on Early Uranus”, via iopscience.iop.org https://astrumspace.info/uranusimpact
“New Moon Discovered Orbiting Uranus Using NASA’s Webb Telescope”, via science.nasa.gov https://astrumspace.info/webburanus
“Uranus: Rings of Dark Particles”, via jpl.nasa.gov https://astrumspace.info/uranusrings
“Planetary Alignment Provides NASA Rare Opportunity to Study Uranus”, via nasa.gov https://astrumspace.info/uranusoccult...https://www.youtube.com/redirect?ev...rumspace.info/uranusoccultation&v=wKcMvR2C0oA
▀▀▀▀▀▀
Credits:
Writer: Patricia Ward
Video Editor: Barnaby Egan
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 #Uranus
 
View: https://twitter.com/NASASolarSystem/status/2027088717148528944


NASA’s ESCAPADE Ready to Study Space Weather from Earth to Mars [Feb 26]

Now, NASA’s ESCAPADE (Escape and Plasma Acceleration and Dynamics Explorers) mission, which launched on Nov. 13, 2025, has turned on the science instruments that will investigate how this happened and how the Sun continues to influence the Red Planet. The science instruments, which are all operating as of Feb. 25, also will study space weather in new ways near Earth and on the way to Mars.
 
First glimpse of comet 3I/ATLAS from Juice science camera

This striking image from the science camera on ESA’s Jupiter Icy Moons Explorer (Juice) shows interstellar comet 3I/ATLAS spewing dust and gas. The tiny nucleus of the comet (not visible) is surrounded by a bright halo of gas known as the coma. A long tail stretches away from the comet, and we see hints of rays, jets, streams and filaments.

The inset in the image shows the same data, but processed to highlight the coma structure. The arrows in the top left indicate the direction in which the comet was moving (blue) and the relative direction of the Sun (yellow). While 3I/ATLAS is a visitor from interstellar space, travelling from outside the Solar System, its behaviour is completely in line with that expected from a ‘normal’ comet.

The camera, named JANUS, took this image on 6 November 2025, just seven days after the comet made its closest approach to the Sun. At the time, Juice was about 66 million km away from the comet.

Throughout November, Juice used five of its science instruments to observe 3I/ATLAS – JANUS, MAJIS, SWI, PEP and UVS. Together, they collected information that will reveal how the comet was behaving and what it is made of.

During the months that followed the observations, Juice was on the opposite side of the Sun to Earth. It was using its main high-gain antenna as a heat shield, and its smaller medium-gain antenna to send back data to Earth at a lower rate. This meant that instrument teams had to wait until last week to receive the data; they are now working hard to analyse them.

In total, JANUS took more than 120 images of 3I/ATLAS across a large wavelength range. The instrument team is taking a closer look at all these images to understand what they reveal about the comet.

Meanwhile, the MAJIS and UVS teams are busy studying spectrometry data, those behind SWI are investigating data on the comet's composition, and the PEP team is digging into particle data. Together with the ESA team working on Juice’s navigation camera, which also photographed 3I/ATLAS, they will all come together in late March to discuss their findings.

Science is slow, but as the instruments teams are now all-too-aware, good things come to those who wait. Stay tuned for an update from us.

For the latest updates and FAQs related to comet 3I/ATLAS, see esa.int/3IATLAS.
 
It is well past time that NASA probed Uranus.
Must be Expulsive Nuclear-Electric Manned Astroliner (ENEMA)
expulsive-nuclear-electric-manned-astroliner-jpg.757586
 
Solved: New analysis of Apollo Moon samples finally settles debate about lunar magnetic field

Researchers from the Department of Earth Sciences, University of Oxford, have resolved a long-standing debate about the strength of the Moon’s magnetic field. For decades, scientists have argued whether the Moon had a strong or weak magnetic field during its early history (3.5 - 4 billion years ago). Now a new analysis – published today (26 February) in Nature Geoscience – shows that both sides of the debate are effectively correct.

Using samples from the Apollo missions, the researchers found that at times the Moon had an extremely strong magnetic field- even stronger than Earth’s. But these periods were very short and the exception – for most of the time, the Moon had a weak field.

The reason the debate persisted is because the Apollo missions all landed in the same place, with a high concentration of rocks that happened to capture these rare events of strong magnetism.

https://www.eurekalert.org/news-releases/1117274
 
Here's a video about Vaalbara the first known continent of Earth:


This video explores the mystery of Vaalbara, the hypothesized first supercontinent, which formed nearly 3.6 billion years ago on a young and volatile Earth. During the Archean Eon, the planet’s surface was dominated by volcanic activity and iron rich oceans, but cooling crust allowed the first stable granite cratons to rise above the water. Geologists have traced matching greenstone belts and ancient rock sequences between modern day South Africa and Western Australia, revealing striking structural and geochemical similarities that suggest these regions were once joined.​
Vaalbara marked the beginning of a supercontinent cycle that unfolded over three billion years, later producing landmasses such as Kenorland, Columbia, Rodinia, and eventually Pangea. Plate tectonics drove this repeating process of assembly and breakup, reshaping ocean circulation, atmospheric chemistry, and the evolution of early life. Rodinia’s fragmentation may even have contributed to global glaciations that transformed the biosphere.​
The shifting architecture of Earth’s crust did more than rearrange continents. It created the environmental pressures and opportunities that guided life from single celled microbes to complex organisms, setting the stage for everything that followed.​
00:00 Intro
01:20 The Cultural Lie
3:14 The Alien Factory
6:17 The Smoking Guns
8:47 The Precision Toolkit
13:25 The Giants Awaken
18:45 The Tyranny of Geography
22:47 The Heartbeat Continues
 
A short video about Earth's gold and where it came from:


Gold is one of the rarest and most valuable metals on Earth.
But here’s the real mystery…
Gold was not formed deep inside our planet.
It was created billions of years ago during violent cosmic events — when massive stars exploded or when neutron stars collided in space. These extreme explosions forged heavy elements like gold and scattered them across the universe.
Later, this cosmic debris became part of the cloud that formed Earth.
In this video, we explore:
• Why normal stars cannot create gold
• How supernovae and neutron star collisions form heavy elements
• How gold ended up inside Earth
• Why gold is so rare
• The science behind one of the most valuable metals on Earth
Every gold ring, every coin, every bar… was born in a cosmic explosion
 
View: https://twitter.com/VRubinObs/status/2026721379177869797


The largest spot-the-difference effort EVER has begun!

On the night of Feb 24, NSF–DOE Rubin Observatory officially released its first ~800,000 public alerts of detected changes in the night sky!

These first alerts use early, pre-survey observations while Rubin finishes preparations to begin its decade-long survey.

This is just the start for a system that is expected to produce up to ~7 million of these alerts per night! ✨

View: https://twitter.com/VRubinObs/status/2026033185079832861


In a single image, Rubin will detect thousands of changes in the sky — from objects in our Solar System to exploding or pulsing stars and actively feeding supermassive black holes, as well as surprises we can't predict yet!

NSF–DOE Vera C. Rubin Observatory Launches Real-Time Discovery Machine for Monitoring the Night Sky [Feb 25]
 
Snowball Earth's liquid seas dipped way below freezing

Earth froze over 717 million years ago. Ice crept down from the poles to the equator, and the dark subglacial seas suffocated without sunlight to power photosynthesis. Earth became an unrecognizable, alien world—a "snowball Earth," where even the water was colder than freezing.

In Nature Communications, researchers reported the first measured sea temperature from a snowball Earth episode: −15°C ± 7°C. If this figure holds up, it will be the coldest measured sea temperature in Earth's history.

https://www.space.com/astronomy/earth/snowball-earths-liquid-seas-dipped-way-below-freezing
 
When a day on early Earth post The-impact lasted just six days:


This video examines the early Earth when our planet rotated far faster than it does today and a full day lasted only about six hours. During this period, shortly after the Moon formed roughly 4.5 billion years ago, the Moon orbited much closer to Earth and exerted an intense gravitational pull on the planet’s oceans.​
Using principles from physics and planetary science, the video explains the process known as lunar retreat. Tidal interactions between Earth and the Moon transferred rotational energy from Earth into the Moon’s orbit, gradually slowing Earth’s spin while pushing the Moon farther away. In the Archean Eon, this interaction produced enormous tides that likely flooded continental margins and mixed the early oceans on a global scale. Geological evidence from tidal rhythmites and models of angular momentum help scientists reconstruct how rapidly Earth’s rotation was changing.​
The video also explores why this slowing mattered for life. Longer days stabilized climate patterns, moderated temperature swings, and helped establish the environmental rhythms that complex organisms later depended on. Earth’s current 24 hour day is not accidental but the result of billions of years of gravitational exchange between planet and satellite.​
The takeaway is that the Moon did not just light our nights but fundamentally shaped Earth’s habitability by reshaping time itself.
00:00 Intro
00:34 The 1,500-Day Year
2:55 The Energy Thief
5:28 The Friction Machine
9:12 The Tsunami Clock
14:04 The Wet-Dry Reactor
16:33 The 19-Hour Gate
19:10 The Billion-Year Stall
21:36 The Goldilocks Brake
 
True NMaude, I had forgotten about that, though consider this we should be radio noisy to civilisations that are 22 light years away if that is the case.
 
This record-breaking quadruple star system is so jam-packed it could fit between Jupiter and our sun

Using NASA's exoplanet-hunting spacecraft TESS (Transiting Exoplanet Survey Satellite) astronomers have discovered an extraordinary quadruple star. The system is the tightest 3+1-star system, a subset of quadruple star systems, yet discovered. Excitingly, the discoverers of this system were also able to determine what its final fate will be.

The system TIC 120362137 consists of a stable and tightly bound inner system of three stars orbiting each other that are orbited by a more distant outer star observing the system from afar. While the outer star is located at around the same distance from the stellar triplet as the distance from Jupiter to the sun, the inner stellar sub-system would fit within the orbit of Mercury, the closest planet to the sun, around our star.

https://www.space.com/astronomy/sta...cked-it-could-fit-between-jupiter-and-our-sun
 

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