凤凰
火星探测计划
火星登陆
地质学
天体生物学
大气(单位)
矮行星
永久冻土
地貌学
矿物学
环境科学
火星探测
考古
太阳系
海洋学
气象学
地理
物理
大都市区
作者
Peter H. Smith,L. K. Tamppari,R. E. Arvidson,D. Bass,D. L. Blaney,W. V. Boynton,A. I. Carswell,David C. Catling,B. C. Clark,T. J. Duck,E. DeJong,David Fisher,W. Goetz,H. P. Gunnlaugsson,M. H. Hecht,V. Hipkin,J. H. Hoffman,S. F. Hviid,H. U. Keller,Samuel P. Kounaves
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2009-07-03
卷期号:325 (5936): 58-61
被引量:551
标识
DOI:10.1126/science.1172339
摘要
Phoenix Ascending The Phoenix mission landed on Mars in March 2008 with the goal of studying the ice-rich soil of the planet's northern arctic region. Phoenix included a robotic arm, with a camera attached to it, with the capacity to excavate through the soil to the ice layer beneath it, scoop up soil and water ice samples, and deliver them to a combination of other instruments—including a wet chemistry lab and a high-temperature oven combined with a mass spectrometer—for chemical and geological analysis. Using this setup, Smith et al. (p. 58 ) found a layer of ice at depths of 5 to 15 centimeters, Boynton et al. (p. 61 ) found evidence for the presence of calcium carbonate in the soil, and Hecht et al. (p. 64 ) found that most of the soluble chlorine at the surface is in the form of perchlorate. Together these results suggest that the soil at the Phoenix landing site must have suffered alteration through the action of liquid water in geologically the recent past. The analysis revealed an alkaline environment, in contrast to that found by the Mars Exploration Rovers, indicating that many different environments have existed on Mars. Phoenix also carried a lidar, an instrument that sends laser light upward into the atmosphere and detects the light scattered back by clouds and dust. An analysis of the data by Whiteway et al. (p. 68 ) showed that clouds of ice crystals that precipitated back to the surface formed on a daily basis, providing a mechanism to place ice at the surface.
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