The captivating shapes of wind-carved crags called
yardangs are revealed in this zoomed-in crop of a broader panorama captured by
NASA’s Curiosity Mars rover on Aug. 11, 2026. Scientists are eager to learn
more about how the yardang layer formed.
NASA/JPL-Caltech/MSSS
A newly released panorama captured by NASA’s Curiosity rover offers the
most detailed view yet of distant, wind-carved Martian cliffs, highlighting
features the mission’s scientists have long been waiting to see up close. The
scene was snapped at 8:30 a.m. local Mars time, showing striking blue hues in
the foreground as bright morning light illuminates crags known as yardangs on
the horizon.
The panorama was captured by
Curiosity’s Mastcam on Aug. 11, the 4,982nd Martian day, or sol, of the
mission, and comprises six individual images that were stitched together after
being sent to Earth. Unlike most of Curiosity’s Mastcam images, this one was
processed without white balancing, preserving the early morning appearance.
The six shots that make up this panorama, captured by
NASA’s Curiosity on Aug. 11, were stitched together after being sent back to
Earth. Unlike most images from the rover’s Mastcam, this one was processed
without the usual white balancing — an artistic choice that preserves the early
morning appearance.
NASA/JPL-Caltech/MSSS
The yardang layer extends roughly 10 miles (16 kilometers) across the
northwestern reaches of Mount Sharp, a 3-mile-tall (5-kilometer-tall) mountain
that Curiosity has been ascending since 2014. In fact, the rover recently
passed another milestone in its ascent, reaching 0.6 miles (1 kilometer) of elevation — the most ever climbed on Mars. As it draws
ever-closer to the yardangs, mission scientists expect to get even more amazing
imagery — and, they hope, answers to how these cliffs were created.
Mount Sharp is made up of layers,
each recording a distinct period of Mars’ history. By studying them, scientists
have been able to learn more about lakes and streams that covered this part of the Red Planet billions of
years ago. Eventually, the water dried up and left salty minerals behind. After
new material stopped settling on the mountain, some of it may have been
stripped away by wind, giving rise to the yardangs.
“The
yardang layer looks out of place. It’s the wrong color, the layers tilt at an
odd angle, and it almost appears plastered on,” said Ashwin Vasavada, Curiosity
project scientist of NASA’s Jet Propulsion Laboratory in Southern California.
“But that’s what makes it exciting to reach. No one is sure exactly what
created this layer, but one idea is it may be ash deposited by ancient volcanic
eruptions.”
Curiosity is in the second year of its
fifth extended mission, which started with an exploration of the spiderweb-like boxwork ridges. The rover will spend most of the next year or so driving through
layers enriched with sulfates and carbonates, both signs of ancient drying on
the surface. Sometime in 2027, scientists hope to reach the base of the
yardangs, where Curiosity will be able to use its robotic arm to collect
one-of-a-kind data on these mysterious features.
More
about Curiosity
Curiosity was built by NASA JPL, which
is managed by Caltech in Pasadena, California. NASA JPL leads the mission on
behalf of the agency’s Science Mission Directorate in Washington as part of its
Mars Exploration Program portfolio. Malin Space Science Systems in San Diego
built and operates Mastcam.
To learn more about Curiosity, visit: https://science.nasa.gov/mission/msl-curiosity
Source: NASA’s Curiosity Rover Catches Stunning Martian Dawn - NASA




