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Non-LTE infrared observations at Venus: From NIMS/Galileo to VIRTIS/Venus Express

机译:金星的非LTE红外观测:从NIMS /伽利略到VIRTIS /金星快车

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摘要

Recent improvements in a comprehensive non-local thermodynamic equilibrium (non-LTE) model of CO_2 atmospheres has permitted a better understanding of a number of Venusian atmospheric measurements taken more than a decade ago by the "Near Infrared Mapping Spectrometer" (NIMS) on board the Galileo spacecraft during its Venus fly-by. Those data, containing a strong non-LTE component, showed a structure in the 4.3-μm spectral region which was challenging for non-LTE models so far. The model used in this work was refined after analysis of Martian CO_2 atmospheric emission taken by the "Planetary Fourier Spectrometer" (PFS) and the "Visible and Infrared Mineralogical Mapping Spectrometer" (OMEGA) instruments on board Mars Express. Here we show that both the limb and the nadir measurements of the Venus daylight atmosphere taken at 4.3-μm by NIMS can be fitted reasonably well with the revised model. This gives confidence in the usage of such model for the analysis of the Venus Express mission, in particular for the "Visible Infrared Thermal Imaging Spectrometer" (VIRTIS) instrument which will systematically observe these emissions. We present here non-LTE simulations for VIRTIS which demonstrate its capabilities and potential for detecting atmospheric emissions of CO and CO_2 under non-LTE, both in limb and nadir observations and we discuss briefly the perspectives to use them in order to improve our understanding of the physics of the upper atmosphere of Venus.
机译:对CO_2大气的综合非局部热力学平衡(non-LTE)模型的最新改进,使人们可以更好地了解船上“近红外测绘光谱仪”(NIMS)在十多年前进行的维纳斯大气测量。伽利略号飞船在金星飞越期间。这些数据包含很强的非LTE成分,显示出4.3μm光谱区域的结构,这对于迄今为止的非LTE模型来说是具有挑战性的。在通过“星型傅里叶光谱仪”(PFS)和“可见和红外矿物学制图谱仪”(OMEGA)仪器在火星快车上对火星CO_2大气排放进行分析之后,改进了用于此工作的模型。在这里,我们表明,通过修正后的模型,NIMS在4.3μm处拍摄的金星日光大气的肢体和最低点测量值都可以很好地拟合。这使人们有信心使用这种模型来分析Venus Express任务,特别是用于“可见红外热成像光谱仪”(VIRTIS)仪器的系统,该仪器将系统地观察这些排放。我们在此展示VIRTIS的非LTE仿真,以肢体和最低点的观测展示其在非LTE下检测CO和CO_2大气排放的能力和潜力,并简要讨论使用它们的观点,以增进我们对金星上层大气的物理学。

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