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Jezero crater's 'Delta Scarp' revealed in new images
by Staff Writers
Pasadena CA (JPL) Jun 23, 2021

This composite image of the "Delta Scarp" in Mars' Jezero Crater was generated using data from two imagers aboard NASA's Perseverance rover. Taken by the rover's Mastcam-Z, the bottom image shows both the base and plateau of the escarpment. The inset above, created from a mosaic of five Remote Microscopic Imager (RMI) pictures, zooms in on a 377-foot-wide (115-meter-wide) portion of the scarp, allowing closer inspection of some of its intriguing geologic features.

A Perseverance rover scientist's favorite shot from the young Mars mission provides a new angle on an old and intriguing surface feature. Ask any space explorer, and they'll have a favorite image or two from their mission. For Apollo 8's Bill Anders, it was a picture looking back at the Earth from near the Moon.

Astronaut Randy Bresnik prizes a photo of an aurora he took while aboard the International Space Station. And for Vivian Sun, a scientist at NASA's Jet Propulsion Laboratory in Southern California, it's an image NASA's Perseverance Mars rover took of one of Jezero Crater's escarpments (long, steep slopes at the edge of a plateau) - so far away but yet so tantalizingly close.

Sun knows that close-ups of what the rover's science team has named the "Delta Scarp" and its conglomerates (coarse-grained pebbles mixed with sand turned to rock) and cross-bedding (tilted layers of sedimentary rock) may, at first glance, seem like something only a geologist could love. But, the co-lead of Perseverance's first science campaign wants to assure you that whatever it may lack in cinematic panache, this Martian mosaic makes up for in geologic importance.

"I've been studying Jezero Crater for years and must have looked at orbital images of the Delta Scarp over a thousand times," said Sun. "But you can only learn so much from orbit, and when this image of the scarp came down to Earth from the rover after landing, it literally took my breath away. This is a favorite because for the first time I could see actual evidence of the conglomerates and cross-bedding we had hypothesized."

Conglomerates are cemented together in a watery environment, and cross-bedding can be evidence of water movement recorded by waves or ripples of loose sediment the water passed over long ago. Both features are precisely the kind Sun and the science team hoped to find in Jezero. About 3.8 billion years ago, the crater was likely home to a body of water the size of Lake Tahoe, along with a river and a fan-shaped delta formed by sedimentary deposits from that river.

"We've known for a while that billions of years ago the Jezero's Delta Scarp was home to a rushing river," said Sun. "Now we know we'll be able to see evidence of this river system up close, getting a better idea of its size and strength of the water rushing through it. And because the river deposited sediments and other material at the scarp from not only inside Jezero but outside as well, it should be an amazing location to look for signs of ancient life."

The mission expects to explore the Delta Scarp region during Perseverance's second science campaign, sometime next year. At present, the rover is in the opening days of its first science campaign, exploring a 1.5-square-mile (4-square-kilometer) patch of crater floor that may contain Jezero's deepest (and most ancient) layers of exposed bedrock, along with other intriguing geologic features. It is during this initial campaign that they'll collect the first samples from another planet for return to Earth by a future mission.

As for Sun's favorite picture, it shows a 377-foot-wide (115-meter-wide) portion of the scarp. It was stitched together from five images taken by the rover's Remote Microscopic Imager (RMI) camera on March 17, 2021 (the 26th Martian day, or sol of the mission), from 1.4 miles (2.25 kilometers) away.

Part of the SuperCam instrument, the RMI can spot an object the size of softball from nearly a mile away, allowing scientists to take images of details from long distances. It can also observe dust grains as small as four-thousandths of an inch (100 microns). Perched atop the rover's mast, SuperCam's 12-pound (5.6-kilogram) sensor head can perform five types of analyses to study Mars' geology and help scientists choose which rocks the rover should sample in its search for signs of ancient microbial life.


Related Links
Perseverance Mars 2020 Rover
Mars News and Information at MarsDaily.com
Lunar Dreams and more


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MARSDAILY
Perseverance Rover Begins Its First Science Campaign on Mars
Pasadena CA (JPL) Jun 10, 2021
On June 1, NASA's Perseverance Mars rover kicked off the science phase of its mission by leaving the "Octavia E. Butler" landing site. Until recently, the rover has been undergoing systems tests, or commissioning, and supporting the Ingenuity Mars Helicopter's month of flight tests. During the first few weeks of this first science campaign, the mission team will drive to a low-lying scenic overlook from which the rover can survey some of the oldest geologic features in Jezero Crater, and they'll b ... read more

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