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A new space instrument concept for the measurement of CO_2 concentration in the atmosphere

机译:一种新的空间仪器概念,用于测量大气中的CO_2浓度

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Measuring the concentration of greenhouse gases from space is a topical challenge. They are measured via a precise analysis of the signature of chemical gaseous species (CO_2, CH_4, CO, etc.) in the spectrum of the Earth's atmosphere. Two types of spectrometer are commonly used. The first is based on the interference between two radiation waves. The Infrared Atmospheric Sounding Interferometer (IASI) aboard the METOP satellite is a good example of a fully-operational instrument of this kind. The second is based on the use of dispersive optical components. These instruments must have high radiometric and spectral resolutions in narrow spectral bands to be able to discriminate absorption lines from various atmospheric chemical species and to quantify their concentration. This is the case, for example, of the instrument aboard NASA's Orbiting Carbon Observatory (OCO). Our analysis led us to define a new instrument concept, based on a dispersive grating spectrometer, offering similar performance in a more compact and therefore less expensive instrument. After describing this instrument, which uses a specific grating component, a preliminary assessment of performances will be presented, including the theoretical calculations and formulae. A mock-up version of this specific grating demonstrated the feasibility of this concept and its capabilities. This preliminary design is encouraging and shows that such a spectrometer may be compatible with a microsatellite bus. Some prospects for improvement are also considered.
机译:测量来自太空的温室气体的浓度是一项重大挑战。通过对地球大气光谱中的化学气态物种(CO_2,CH_4,CO等)的特征进行精确分析来测量它们。通常使用两种类型的光谱仪。第一种是基于两个辐射波之间的干扰。 METOP卫星上的红外大气探测干涉仪(IASI)是这种全面运行的仪器的一个很好的例子。第二种是基于色散光学组件的使用。这些仪器必须在狭窄的光谱带中具有高辐射度和光谱分辨率,才能区分吸收线与各种大气化学物质并量化其浓度。例如,NASA轨道碳天文台(OCO)上的仪器就是这种情况。我们的分析使我们根据色散光栅光谱仪定义了一种新的仪器概念,在更紧凑,因此更便宜的仪器中提供了类似的性能。在描述使用特定光栅组件的仪器之后,将对性能进行初步评估,包括理论计算和公式。该特定光栅的模拟版本展示了该概念及其功能的可行性。这种初步设计令人鼓舞,并表明这种光谱仪可能与微卫星总线兼容。还考虑了一些改进的前景。

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