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Chemical origins of the Mars ultraviolet dayglow

机译:火星紫外线的化学原产

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Airglow optical emissions from planetary atmospheres provide remotely observable signatures of atmospheric composition, energy deposition processes, and the resulting chemical reactions. We may one day be able to detect airglow emissions from extrasolar planets. Reliable interpretation requires quantitative understanding of the energy sources and chemical mechanisms that produce them. The ultraviolet dayglow observations by the Mariner 6 and 7 (1969) and Mariner 9 (1971-72) motivated numerous modeling studies and laboratory experiments. The most obvious source reaction is photodissociation and photoionization of ambient CO2, which is known in the laboratory to produce the four strong dayglow emitting states: hv + CO2 → O(~1S), CO(a~3n), CO_2~+(A~2Π _u & B~2Σ_u~+) (1) If this simplest of models were sufficient, then the high altitude dayglow emissions would all share the same scale height, which would be that of CO2. The few Mariner dayglow observations provide weak statistics. Addition of 4 months of Mars Express dayglow data, and including radio occultation and mass spectrometry data from other missions, have made the analyses and conclusions more robust. The CO(a~3Π ) and CO_2~+(B~2Σ_u~+) dayglow altitude profiles are consistent with Reaction (1). In contrast, the O(~1S) dayglow scale heights are much larger and are consistent with source Reaction (2): O_2~+ + e~- → O(~1S) (2) Both sets of scale heights change with respect to solar activity roughly as suggested by modeling studies.
机译:行星大气压的防空光学排放提供了远程可观察到的大气组成,能量沉积过程和所得的化学反应。我们可能有一天能够检测来自漏斗行星的防空排放。可靠的解释需要定量了解产生它们的能源和化学机制。 Mariner 6和7(1969)和Mariner 9(1971-72)的紫外线观察激励了许多建模研究和实验室实验。最明显的源反应是环境二氧化碳的光度解剖和光离子,在实验室中已知的4个强大的Dainglow排放状态:HV + CO2→O(〜1S),CO(A〜3N),CO_2〜+(a 〜2π_u&b〜2σ_u〜+)(1)如果这一最简单的型号足够,那么高海拔Dayglow排放将分享相同的比例高度,这将是CO2的尺度高度。少数海军船员Dayglow观察提供了弱势统计数据。添加4个月的火星表达日本数据,包括来自其他任务的无线电掩护和质谱数据,使分析和结论更加强大。 CO(A〜3π)和CO_2〜+(B〜2σ_u〜+)日紫色高度谱与反应(1)一致。相比之下,o(〜1s)日紫色尺度高度大得多,并且与源反应(2)一致:O_2〜+ + e〜 - →O(〜1s)(2)两组比例高度相对于通过建模研究表明,太阳能致大致。

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