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The OH Venus nightglow spectrum: intensity and vibrational composition from VIRTIS-Venus Express observations

机译:OH维纳斯夜光光谱:来自VIRTIS-Venus Express观测的强度和振动成分

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摘要

Limb spectra of the OH nightglow emission corresponding to the ∆v=1 and ∆v=2 sequences have been collected with the VIRTIS infrared imaging spectrograph on board Venus Express between April 2006 and October 2008. A detailed statistical analysis shows that the peak intensity and altitude of the two vibrational sequences are significantly correlated, with a mean intensity ratio of the two sequences of 0.38±0.37. The altitude of the maximum of the ∆v=2 emission is located ~1 km lower than ∆v=1. A spectral analysis shows that the Δv=1 sequence is composed at 44.6% by the (1–0) band, 9.3% by the (3–2) band and 7.1% by the (4–3) band. The Δv=2 emission is best fitted if solely including the (2–0) band.A non-LTE model of OH vibrational population by the O3+H reaction including radiative and collisional relaxation has been used to compare the expected spectral distribution, the altitude of the emission peak and the emission rate under different assumptions on the quenching processes to those observed with VIRTIS. The adopted carbon dioxide, atomic oxygen and ozone densities are based on recent Venus Express remote sensing measurements. We find that the “sudden death” quenching scheme by CO2 produces inadequate spectral distribution between the various bands and insufficient airglow brightness. Instead, the observed spectral distribution and the total emission intensity are reasonably well reproduced with the single quantum jump model, a O density profile peaking at 103.5 km with a maximum value of 1.9×1011 cm−3, a O3 density profile peaking at 5.8×106 cm−3 at 96.5 km and a H density profile close to 108 cm−3 between 90 and 120 km, in agreement with several photochemical models.
机译:在2006年4月至2008年10月之间,使用Venus Express上的VIRTIS红外成像光谱仪收集了与∆v = 1和∆v = 2序列相对应的OH夜辉发射的肢体光谱。详细的统计分析表明,峰值强度和两个振动序列的高度显着相关,两个序列的平均强度比为0.38±0.37。 ∆v = 2排放最大值的高度比∆v = 1低约1 km。频谱分析表明,Δv= 1序列在(1-0)波段中占44.6%,在(3-2)波段中占9.3%,在(4-3)波段中占7.1%。如果仅包括(2-0)频带,则Δv= 2发射是最佳拟合。通过O3 + H反应(包括辐射弛豫和碰撞弛豫)的OH振动种群的非LTE模型已用于比较预期的光谱分布,与VIRTIS观察到的不同,在淬灭过程的不同假设下,发射峰的高度和发射速率。所采用的二氧化碳,原子氧和臭氧的密度基于最近的Venus Express遥感测量结果。我们发现,CO2导致的“猝死”猝灭方案在各个波段之间产生了不足的光谱分布,并且气辉亮度不足。取而代之的是,观察到的光谱分布和总发射强度在单量子跃迁模型中得到了很好的再现,O密度分布在103.5 km处达到峰值,最大值为1.9×1011 cm-3,O3密度分布在5.8×时达到峰值。与几种光化学模型一致,在96.5 km处为106 cm-3,在90至120 km之间的H密度分布接近108 cm-3。

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