Mars rocks collected by Perseverance boost case for ancient life

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THIS PICTURE: Artist's impression of NASA Perseverance Mars Rover. .... STORY COPY: On Monday (6 Sep), NASA’s Perseverance rover completed the collection of the first sample of Martian rock, a core from Jezero Crater slightly thicker than a pencil. Mission controllers at NASA’s Jet Propulsion Laboratory (JPL) in Southern California received data that confirmed the historic milestone. The core is now enclosed in an airtight titanium sample tube, making it available for retrieval in the future. Through the Mars Sample Return campaign, NASA and ESA (European Space Agency) are planning a series of future missions to return the rover’s sample tubes to Earth for closer study. These samples would be the first set of scientifically identified and selected materials returned to our planet from another. “NASA has a history of setting ambitious goals and then accomplishing them, reflecting our nation’s commitment to discovery and innovation,” said NASA Administrator Bill Nelson. “This is a momentous achievement and I can’t wait to see the incredible discoveries produced by Perseverance and our team.” Featuring: General View (NASA Perseverance Mars Rover to Acquire First Sample) Where: Mars, Mars, Marshall Islands When: 06 Sep 2021 Credit: NASA/JPL-CaltechNASA/JPL-Caltech/ASU/MSSS/Cover Images/INSTARimages.com

NASA’s Perseverance Mars rover has now collected two rock samples, with signs that they were in contact with water for a long period of time boosting the case for ancient life on the Red Planet.

“It looks like our first rocks reveal a potentially habitable sustained environment,” Ken Farley, project scientist for the mission, said in a statement on Friday. “It’s a big deal that the water was there for a long time.”

FILE PHOTO: An artist’s impression of NASA Perseverance Mars Rover. /CFP

The six-wheeled robot collected its first sample, dubbed “Montdenier” on September 6, and its second, “Montagnac” from the same rock on September 8.

The rover has been operating in a region known as the Jezero Crater, just north of the equator and home to a lake 3.5 billion years ago, when conditions on Mars were much warmer and wetter than today.

The rock that provided the first samples was found to be basaltic in composition and likely the product of lava flows.

Volcanic rocks contain crystalline minerals that are helpful in radiometric dating.

This in turn could help scientists build up a picture of the area’s geological history, such as when the crater formed, when the lake appeared and disappeared, and how climate changed over time.

“An interesting thing about these rocks as well is that they show signs for sustained interaction with groundwater,” NASA geologist Katie Stack Morgan told a press conference.

The scientists already knew the crater was home to a lake, but couldn’t rule out the possibility that it had been a “flash in the pan” with floodwaters filling up the crater for as little as 50 years.

Now they are more certain groundwater was present for much longer.

“If these rocks experienced water for long periods of time, there may be habitable niches within these rocks that could have supported ancient microbial life,” added Stack Morgan.

The salt minerals in the rock cores may have trapped tiny bubbles of ancient Martian water.

“Salts are great minerals for preserving signs of ancient life here on Earth, and we expect the same may be true for rocks on Mars,” added Stack Morgan.

NASA is hoping to return the samples to Earth for in depth lab analysis in a joint mission with the European Space Agency sometime in the 2030s.

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