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火星大气O_3光谱探测技术

Spectrum Detection Technology of Martian Ozone
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摘要 O3是火星大气中最重要、最活跃的分子之一,它不仅能够控制到达火星地面的紫外光通量,而且能够追踪大气中水蒸气光化解产生的HOX基,同时也是建立火星大气光化学模型的基础。文章主要描述通过天基遥感和地基遥感两种方法探测得到火星大气O3含量,包括空间和时间的分布、垂直剖面及其变化;具体分析了两种方法的探测机理,详细描述了国际相应光谱仪的整机结构和探测的重要成果,为中国进行深空探测提供了参考。 Ozone (O3) is one of the most important and most reactive elements in the Martian atmosphe can not only be able to control the UV flux that reaches the ground, and also trace HOx radicals,and is bas establishing Martian atmospheric photochemical model. This text describes two ways to detect O3 on Mars: space-based and earth-based remote detection, including spatial and temporal distribution and vertical profile its changes.Detailed analysis of the detection mechanism of two methods and description of the structtn imaging spectrometer and the important result are given. All above provides a theoretical basis for exploration.
出处 《航天返回与遥感》 2012年第6期1-9,共9页 Spacecraft Recovery & Remote Sensing
基金 国家自然科学基金项目(40804048) 国家重点基础研究发展计划973项目(2009CB724005) 国家高技术研究发展863计划(2009AA01Z225)项目资助
关键词 臭氧含量探测 成像光谱仪 火星大气 航天遥感 ozone detection imaging spectrometer Martian atmosphere spacecraft remote sensing
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参考文献10

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