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Precise measurement of CO_2 from space using Fabry-Perot based optical setup - current status and development

机译:使用基于法布里 - 珀罗的光学设置 - 电流状态和开发精确测量空间的CO_2

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The FPICC (Fabry-Perot Interferometer for Column CO_2) is a new instrument developed under the Instrument Incubator Program that uses a novel technique for measuring the absorption of CO_2 sunlight reflected from the Earth. The optical setup consists of three channels. The first channel is built to measure carbon dioxide by using a solid Fabry-Perot etalon to restrict the measurement to light in CO_2 absorption bands. The second and third channels focus on the O_2 A band (759-771 nm) composed of about 300 absorption lines, which vary in strength and width according to pressure and temperature. We performed measurements using solid Fabry-Perot etalons with different FSR and different pre-filters. We demonstrated the instrument's significant capability to detect CO_2 and O_2 in laboratory, as well as in ground based and airborne experiments. The initial tests indicate that when the instrument is used with a sun tracker the sensitivity for CO_2 detection is 2.1 ppm in one second average, and the sensitivity to the oxygen column pressure changes is as low as 0.88 mbar. The reduced sensitivity for the airborne experiments arises because the atmospheric scattering processes make the path length more variable and uncertain. One solution to this problem is to use the glint reflection from water surfaces. For this purpose we design and perform a theoretical study to build a different version of the FPICC instrument to be used on a satellite orbiting the Earth and working in a glint mode. This Fabry-Perot based technique is applicable to other species as well. For example one could use the FPICC instrument for fractionations measurements of the stable carbon isotope (~(13)C/~(12)C). The instrument can be used to study the atmosphere of Mars, which consists primarily of CO_2. A theoretical study and design of a version of the instrument for Mars for CO_2 and CH_4 measurements will be presented. We report results on the recent calibration of the instrument, recent data from ground tests at Goddard, design versions, and theoretical models for the Earth and Mars instruments.
机译:所述FPICC(法布里 - 珀罗干涉仪对于柱CO_2)是使用用于测量CO_2太阳光从地球反射的吸收的新技术的仪器孵化计划下开发出一种新的仪器。光学设置由三个通道组成。所述第一信道是建立通过使用固体法布里 - 珀罗标准具,以限制在CO_2吸收带的测量光来测量二氧化碳。在第二和第三信道集中在约300吸收线,这在强度和根据压力和温度的宽度而变化构成的O_2的条带(759-771纳米)。我们使用固体法布里 - 珀罗标准具不同FSR和不同的预过滤器进行测量。我们展示了仪器的检测CO_2和O_2实验室,以及基于地面和机载实验显著能力。初始试验表明,当仪器与太阳跟踪用于CO_2检测的灵敏度为2.1ppm的一个第二平均,并以氧气塔压力变化的灵敏度低至0.88毫巴。机载实验的灵敏度降低的出现是因为大气散射过程使路径长度更可变的和不确定的。一个解决这个问题的方法是使用从水表面的闪烁反射。为此,我们设计并进行了理论研究,以建立要在卫星绕地球运行,并在闪烁模式下工作使用不同版本的FPICC仪器。这法布里 - 珀罗基于技术适用于其他物种为好。例如,一个可以使用FPICC仪器用于稳定碳同位素(〜(13)C /〜(12)C)的分馏测量。该仪器可用于研究火星的气氛,这主要由CO_2。一个版本的仪器对火星和CO_2 CH_4测量的理论研究和设计将提交。我们报告对近期的仪器,从戈达德地面试验,设计的版本,并为地球和火星仪器理论模型最近的数据的校准结果。

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