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CARBO-The Carbon Observatory Instrument Suite -the next generation of Earth observing instruments for global monitoring of carbon gases

机译:Carbo - 碳天文台仪器套件 - 下一代地球观测碳气体监测的地球观测仪器

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The Carbon Observatory Instrument Suite, or CARBO, consists of four carbon observing instruments sharing a common instrument bus, yet targeted for a particular wavelength band each with a unique science observation. They are: a) Instrument 1, wavelength centered at 756 nm for oxygen and solar-induced chlorophyll fluorescence (SIF) observations, b) Instrument 2, centered at 1629 nm, for carbon dioxide (CO_2) and methane (CH_4) observation, c) Instrument 3, centered at 2062 nm for carbon dioxide and d) Instrument 4, centered at 2328 for carbon monoxide (CO) and methane. From low-Earth orbit, these instruments have a field-of-view of 10 to 15 degrees, and a spatial resolution of 2 km square. These instruments have a spectral resolving power ranging from ten to twenty thousand, and can monitor column-average dry air mole fraction of carbon dioxide (XC02) at 1.5 ppm, and methane (XCH4) at 7 ppb. These new instruments will advance the use of immersion grating technology in spectrometer instruments in order to reduce the size of the instrument, while improving performance. These compact, capable instruments are envisioned to be compatible with small satellites, yet modular to be configured to address the particular science questions at hand. Here we report on the current status of the instrument design and fabrication, focusing primarily on Instruments 1 and 2. We will describe the key science and engineering requirements and the instrument performance error budget. We will discuss the optical design with particular emphasis on the immersion grating, and the advantages this new technology affords compared to previous instruments. We will also discuss the status of the focal plane array and the detector electronics and housing. Finally, we report on a new approach-developed during this instrument design process-which enables simultaneous measurement of both orthogonal polarization states (S and P) over the field-of-view and optical bandpass. We believe this polarization sen
机译:碳观察台套件或Carbo包括四个碳观察仪器,共用普通仪器总线,但为特定波长的乐队瞄准具有独特的科学观察。它们是:A)仪器1,波长为756nm,用于氧气和太阳能诱导的叶绿素荧光(SIF)观察,B)仪器2,以1629nm为中心,用于二氧化碳(CO_2)和甲烷(CH_4)观察,C )仪器3以2062nm为中心,用于二氧化碳和d)仪器4,以2328元用于一氧化碳(CO)和甲烷。从低地球轨道,这些仪器的视野为10到15度,2公里广场的空间分辨率。这些仪器具有10至2万的光谱分析功率,可以在1.5ppm下监测二氧化碳(XC02)的柱平均干燥空气摩尔分数,并在7ppb下甲烷(Xch4)。这些新仪器将推进在光谱仪仪器中使用浸没光栅技术,以减少仪器的尺寸,同时提高性能。这些紧凑的功能,能够设想与小型卫星兼容,但是模块化以配置为解决手头的特定科学问题。在这里,我们报告了仪器设计和制造的当前状态,主要关注仪器1和2.我们将描述关键科学和工程要求和仪器性能错误预算。我们将特别强调浸入光栅的光学设计,以及与以前的仪器相比,这项新技术提供的优点。我们还将讨论焦平面阵列和探测器电子和外壳的状态。最后,我们报告了在该仪器设计过程中开发的新方法 - 这使得能够在视野和光学带通中同时测量正交偏振态(S和P)。我们相信这种极化森

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