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Death Valley provides rover’s-eye view of Mars geology

New 女生小视频 visits Death Valley to find out how human geologists read Earth's past in its present 鈥 and how the rover Curiosity will apply those tricks on Mars

Death Valley's peaks have a layered history rather like Mars's Gale crater
Death Valley鈥檚 peaks have a layered history rather like Mars鈥檚 Gale crater
(Image: ML Sinbald/Corbis)
John Grotzinger, project scientist for the Mars Science Laboratory
John Grotzinger, project scientist for the Mars Science Laboratory
(Image: Lisa Grossman)
Death Valley provides rover's-eye view of Mars geology
(Image: Lisa Grossman)

I GAVE up trying to pretend I was a Mars rover half an hour into my mad scramble up a scree-covered mountain. NASA鈥檚 gigantic Curiosity rover, due to land on the Red Planet in August, will never have to deal with slopes this steep, I grumble to myself. Or a sun this hot. Or sore legs. It doesn鈥檛 sweat, and it will have a plutonium battery. Lucky robot.

Perhaps what I lack in plutonium I make up for in excitement. I am scaling this slope with a group of scientists and journalists led by John Grotzinger, project scientist for the Mars Science Laboratory (MSL), which launched Curiosity in November. The goal of this $2.5 million machine, the most ambitious ever sent to Mars, is geological: to analyse sediments that could have preserved organic compounds or other evidence of ancient microbes, if these were ever there. Here in Death Valley, armed with hammers and lenses, we are learning how geologists read Earth鈥檚 past in its present 鈥 and how Curiosity will apply those tricks to Mars.

Curiosity will land wheels-first in a basin called Gale crater that scientists believe once contained a liquid of some kind. 鈥淐ould鈥檝e been water. Could鈥檝e been beer,鈥 says MSL鈥檚 Ken Edgett. The liquid trapped dust and sediment as it fell out of the sky, leading to the formation of a 5-kilometre-high mound in the basin鈥檚 centre. Luckily for Curiosity, the mound presents the crater鈥檚 history in a neat timeline from bottom to top. To read it, all the rover has to do is climb.

Death Valley has its own layered history. Though it is hard to imagine now, the parched peaks we are clambering over were once flat sea floor. Similar to Gale, sediments filtered through the seawater to settle on the bottom, gradually laying down these rocks. Plate tectonics then lifted the rocks and tilted them into a crazy jumble.

None of this is obvious to me as I start swinging my rock hammer, and bring rock chunks into focus with my hand lens. But Grotzinger, whose intuition has been sharpened by decades of fieldwork, casually reads the mountain鈥檚 history in subtle variations of shade and texture that I can barely see. This is the sort of detective work geologists on Earth will have to do on images beamed back by Curiosity. A hand lens is 鈥渢he one thing geologists don鈥檛 leave home without鈥, Grotzinger explains 鈥 and Curiosity carries one too, in the form of the camera , or Mars hand lens imager.

鈥淎 hand lens is the one thing geologists don鈥檛 leave home without 鈥 and the Mars rover Curiosity will have one too鈥

To verify the source of the sediments I am holding, I would need to take them to a lab for chemical analysis. Bringing samples back to Earth isn鈥檛 an option for Curiosity, so it will simply throw them into its in-built geochemistry lab.

Despite this, it won鈥檛 be as fast as a human geologist. 鈥淲hat we just did,鈥 Grotzinger says after about an hour, 鈥渨ill probably take the rover a month. No kidding.鈥

The mission will last two Earth years. That may seem a long time, but the uncertainty of the future of Mars exploration makes me want to slow the clock. After MSL, a big question mark hangs over NASA鈥檚 future on Mars. The natural next step would be to bring samples back to Earth but with its current budget, NASA probably won鈥檛 get around to that for at least a decade. In February, the agency slashed its ambitious plans to explore the Red Planet.

Private industry could pick up the slack. In a first for a commercial firm, SpaceX of Hawthorne, California, is planning to dock with the International Space Station. It鈥檚 the first step in broader plans for private space firms to explore deep space, including Mars (see main story). 鈥淚 think it makes total sense from an evolutionary point of view to have private companies do things that NASA pioneered,鈥 says Ashwin Vasavada of NASA鈥檚 Jet Propulsion Lab in Pasadena, California.

For now, though, it is the NASA team that has seen more Mars rocks than anyone 鈥 hopefully enough to read the stories in the stones. 鈥淚n geology,鈥 says Grotzinger鈥檚 graduate student Katie Stack, 鈥渨hoever sees the most rocks wins.鈥

Topics: Mars / Space flight