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The Orbiting Carbon Observatory (OCO) Instrument Optical Design

机译:轨道碳天文台(OCO)仪器光学设计

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The Orbiting Carbon Observatory (OCO) will measure the distribution of total column carbon dioxide in the Earth's atmosphere from an Earth-orbiting satellite. Three high-resolution grating spectrometers measure two CO_2 bands centered at 1.61 and 2.06 μm and the oxygen A-band centered at 0.76 μm in the near infrared region of the spectrum. This paper presents the optical design and highlights the critical optical requirements flowed down from the scientific requirements. These requirements necessitate a focal ratio of f/1.9, a spectral resolution of 20,000, and precedence-setting requirements for polarization stability and the instrument line shape function. The solution encompasses three grating spectrometers that are patterned after a simple refractive spectrometer approach consisting of an entrance slit, a two-element collimator, a planar reflection grating, and a two-element camera lens. Each spectrometer shares a common field of view through a single all-reflective telescope. The light is then re-collimated and passed through a relay system, separating the three bands before re-imaging the scene onto each of the spectrometer entrance slits using an all-reflective inverse Newtonian re-imager.
机译:轨道碳天文台(OCO)将测量地球轨道卫星在地球大气中总柱状二氧化碳的分布。在光谱的近红外区域中,三个高分辨率光栅光谱仪测量了两个以1.61和2.06μm为中心的CO_2带和以0.76μm为中心的氧气A带。本文介绍了光学设计,并重点介绍了从科学要求中流下来的关键光学要求。这些要求必须有f / 1.9的焦比,20,000的光谱分辨率以及偏振稳定性和仪器线形函数的优先设置要求。该解决方案包括三个光栅光谱仪,这些光栅光谱仪是在简单的折射光谱仪方法之后进行图案化的,包括入口狭缝,两元素准直仪,平面反射光栅和两元素相机镜头。每个光谱仪通过单个全反射望远镜共享一个共同的视野。然后,将光重新准直并通过中继系统,将三个波段分开,然后使用全反射逆牛顿重新成像器将场景重新成像到每个光谱仪入口狭缝上。

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