A zoomed-in view
of the Moon made from images from NASA’s Lunar Reconnaissance Orbiter Camera.
(More information at the bottom of article.)
Credits: NASA
Goddard/Intuitive Machines/Robert Wagner
It started as a
routine data-quality check. But as Robert Wagner, a scientist with NASA’s Lunar
Reconnaissance Orbiter (LRO), scanned a giant Moon map on his computer screen,
an unusually large bright spot circled by a dark halo caught his eye, as it implied
that surface material in that area had been shaken up.
“I just stopped,
dropped everything, and started looking into what that spot was,” said Wagner,
an image-processing specialist from Intuitive Machines who works with data from
the Lunar Reconnaissance Orbiter Camera (LROC) system.
By comparing before and after images of the Moon, Wagner realized he had discovered the largest, newly formed crater ever found in the solar system, as scientists reported Wednesday in Science Advances. This discovery highlights the value of NASA’s Moon orbiter data in studying a dynamic landscape as the agency advances a sustained human presence and expanded scientific and commercial activity on the Moon.
A zoomed-in view
of McGetchin crater, circled on the left, next to a “before” image on the
right. The panel on the left is made from images captured by NASA’s Lunar
Reconnaissance Orbiter Wide-Angle Camera in summer 2025; the right panel was
made from images taken in spring 2011. The white spot is not the crater itself,
but rather material flung out of the crater, which formed when a rock, possibly
this size of a three- to six‑story building,
crashed into the Moon between April 11 and May 22, 2024 – a once-in-a-century
event, as scientists reported on Sept. 15, 2026, in a pair of papers in Science
Advances. The area shown in the images is 38 miles wide.
NASA
Goddard/Intuitive Machines/Robert Wagner
Officially named
McGetchin after pioneering lunar scientist Tom McGetchin, the crater formed on
the Moon’s eastern edge sometime between April 11 and May 22, 2024, after a
comet or asteroid the size of a three- to six-story building hit the surface.
The crash left a
crater, 728 feet wide, that spans the length of two football fields. And at 141
feet deep, the crater could fit three vertically stacked yellow school buses.
Scientists
estimate that an impact of this magnitude happens on the Moon about once in a
century or even longer.
Moon takes
some hits
For more than 17
years, LRO has been circling the Moon and using its seven instruments to map
the topography, surface composition, temperature, and radiation environment
there. The spacecraft’s team has identified at least 1,000 new impact craters
throughout the mission and flagged 100,000 more surface changes from an object
smashing into the Moon or from the debris that flung out after.
With no
atmosphere to slow them or burn them up, space rocks and other objects easily
reach the lunar surface. Most are much smaller compared to the object that
carved out McGetchin crater. The smallest craters scientists can distinguish
from LRO images are about 30 feet wide, the length of a three-story building
laid on its side, made by rocks about 43 inches wide, the size of a
monster-truck tire. Scientists estimate that impacts of this scale produce
about 140 new craters across the Moon each year. But most new ones are made by
microscopic projectiles that leave holes too small to identify in orbital
images.
With its numerous instruments, the spacecraft can observe changes to the lunar surface that aren’t apparent in the LROC images alone. After the crater was discovered, scientists working with LRO’s thermal instrument, Diviner, made follow-up observations of the site. They found a 4-mile-wide area around the crater that is about 16 degrees Fahrenheit cooler at night than its surroundings.
This animated
image set shows an area on the eastern limb of the Moon before and after
McGetchin crater formed there sometime between April 11 and May 22, 2024. The
post-impact image was constructed using data taken by NASA’s Lunar
Reconnaissance Orbiter (LRO) thermal instrument, Diviner, between Nov. 15,
2025, and Feb. 18, 2026, after scientists discovered the crater in
visible-light images taken by LRO’s Wide-Angle Camera. Pre-impact temperatures
are from the Diviner Global High-Resolution Mosaics (GHRM). The crater formed
on the Moon after a comet or asteroid, possibly the size of a six-story
building, hit the surface in a rare, once-in-a-century collision. The dark blue
strip that flashes into view reveals a 4-mile-wide “cold spot” around the
crater that is about 16 degrees Fahrenheit cooler at night than its
surroundings. This cooling happens because an impact fluffs up regolith around
a crater, making it less dense and therefore less able to retain heat.
Scientists on the Diviner team reported this finding in a paper published on
Sept. 16, 2026, in Science Advances. The red and yellow spots indicate areas
typically associated with rocks excavated by long-ago impacts which, though
still at cryogenic temperatures like their surroundings, remain slightly warmer
at night.
NASA
Goddard/UCLA/JHU APL
Reporting in a
second paper Wednesday in the same journal, researchers say that the cooling
happens because the impact fluffs up the regolith around the crater, making it
less dense and therefore less able to retain heat.
The large extent of this “cold spot” is striking, scientists say, because it shows that impacts can modify the Moon’s surface far beyond the crater itself. These physical changes could affect how rover wheels interact with the surface, for instance.
That’s what
Wagner was doing on Oct. 24, 2025, when he came across McGetchin. Using images
from LROC’s Wide-Angle Camera, which captures broad views with pixels the size
of football fields, he stacked hundreds of “before” and “after” frames with
software designed to highlight change. Anything that stayed the same turned
gray while anything different showed up as bright or dark patches.
While the
process sounds straightforward, spotting real craters requires a lot of manual
work. The software flags every tiny shift in lighting or shadow, generating
hundreds of false alarms. For this reason, Wagner typically verifies the
software, looking for small fuzzy halos around pixel‑wide bright points, which indicate splashes of regolith around a new
crater.
Spanning
hundreds of pixels, McGetchin stood out immediately. “It was by far the most
obvious impact debris pattern I’ve ever seen in one of these images,” Wagner
said.
After his
discovery, scientists turned to the Narrow-Angle Camera, which takes much
sharper views at about 3 feet per pixel. This camera’s close-up images, taken
as LRO flew over the impact site again, revealed the crater size, shape, and
how the surrounding terrain was affected. These images also helped researchers
estimate the size and force of the rock fragment that formed the new crater,
details that are expected to appear in a future paper.
Banner image
caption: A zoomed-in view of the Moon, with debris around McGetchin crater
visible as a white spot circled by a dark halo just right of center of the
image (marked with black arrows). This is the view that Robert Wagner saw on
Oct. 24, 2025, during a routine data-quality check. Wagner is an image
processing specialist for NASA’s Lunar Reconnaissance Orbiter Camera, a system
of three cameras. Using images from the Wide-Angle Camera (WAC), which captures
broad views with pixels the size of American football fields, he stacked
hundreds of images captured by WAC over the last several years with software
designed to highlight change. Anything that stayed the same is gray; anything
that changed showed up as bright or dark patches. The stripes in the image are
due to slight changes in lighting between the older and newer images. This
image composite shows an area of the Moon approximately 900 miles across.
By: Lonnie
Shekhtman
Senior Science
Writer
Source: NASA’s Moon Orbiter Spots New, ‘Once-in-Century’ Moon Crater - NASA Science






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