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土卫六热层和电离层的组成与化学性质。

Composition and chemistry of Titan's thermosphere and ionosphere.

作者信息

Vuitton V, Yelle R V, Lavvas P

机构信息

Laboratoire de Planétologie de Grenoble, CNRS, 38041 Grenoble, France Lunar and Planetary Laboratory, University of Arizona, Tucson, AZ 85721-0092, USA.

出版信息

Philos Trans A Math Phys Eng Sci. 2009 Feb 28;367(1889):729-41. doi: 10.1098/rsta.2008.0233.

Abstract

Titan has long been known to harbour the richest atmospheric chemistry in the Solar System. Until recently, it had been believed that complex hydrocarbons and nitriles were produced through neutral chemistry that would eventually lead to the formation of micrometre sized organic aerosols. However, recent measurements by the Cassini spacecraft are drastically changing our understanding of Titan's chemistry. The Ion and Neutral Mass Spectrometer (INMS) and the Cassini Plasma Spectrometer (CAPS) revealed an extraordinary complex ionospheric composition. INMS detected roughly 50 positive ions with m/z<100 and a density higher than 0.1cm-3. CAPS provided evidence for heavy (up to 350amu) positively and negatively charged (up to 4000amu) ions. These observations all indicate that Titan's ionospheric chemistry is incredibly complex and that molecular growth starts in the upper atmosphere rather than at lower altitude. Here, we review the recent progress made on ionospheric chemistry. The presence of heavy neutrals in the upper atmosphere has been inferred as a direct consequence of the presence of complex positive ions. Benzene (C6H6) is created by ion chemistry at high altitudes and its main photolysis product, the phenyl radical (C6H5), is at the origin of the formation of aromatic species at lower altitude.

摘要

长期以来,人们一直认为土卫六拥有太阳系中最丰富的大气化学。直到最近,人们还认为复杂的碳氢化合物和腈类是通过中性化学过程产生的,最终会导致微米级有机气溶胶的形成。然而,卡西尼号航天器最近的测量结果正在彻底改变我们对土卫六化学的理解。离子与中性质量谱仪(INMS)和卡西尼号等离子体谱仪(CAPS)揭示了一种极其复杂的电离层成分。INMS检测到大约50种质荷比小于100且密度高于0.1立方厘米-3的正离子。CAPS提供了重离子(质量高达350原子质量单位)和正负带电离子(质量高达4000原子质量单位)存在的证据。这些观测结果都表明,土卫六的电离层化学极其复杂,分子生长始于高层大气而非较低高度。在此,我们回顾了电离层化学方面的最新进展。高层大气中重中性粒子的存在被推断为复杂正离子存在的直接结果。苯(C6H6)是在高海拔处通过离子化学过程产生的,其主要光解产物苯基自由基(C6H5)是低海拔处芳香族物种形成的起源。

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