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Instrumental characteristics and potential greenhouse gas measurement capabilities of the Compact High-Spectral-Resolution Infrared Spectrometer: CHRIS

机译:仪器特性和电容特性和潜在的温室气体测量功能的紧凑型高光谱分辨率红外光谱仪:克里斯

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摘要

Ground-based high-spectral-resolution infrared measurements are an efficient way to obtain accurate tropospheric abundances of different gaseous species, in particular greenhouse gases (GHGs) such as CO2 and CH4. Many ground-based spectrometers are used in the NDACC and TCCON networks to validate the Level 2 satellite data, but their large dimensions and heavy mass make them inadequate for field campaigns. To overcome these problems, the use of portable spectrometers was recently investigated. In this context, this paper deals with the CHRIS (Compact High-Spectral-Resolution Infrared Spectrometer) prototype with unique characteristics such as its high spectral resolution (0.135 cm(-1) nonapodized) and its wide spectral range (680 to 5200 cm(-1)). Its main objective is the characterization of gases and aerosols in the thermal and shortwave infrared regions. That is why it requires high radiometric precision and accuracy, which are achieved by performing spectral and radiometric calibrations that are described in this paper. Furthermore, CHRIS's capabilities to retrieve vertical CO2 and CH4 profiles are presented through a complete information content analysis, a channel selection and an error budget estimation in the attempt to join ongoing campaigns such as MAGIC (Monitoring of Atmospheric composition and Greenhouse gases through multi-Instruments Campaigns) to monitor GHGs and validate the actual and future space missions such as IASI-NG and Microcarb.
机译:基于地面的高光谱分辨率红外测量是获得不同气态物种的精确对流层,特别是温室气体(温室气体)(如CO2和CH4)的有效方法。许多地基光谱仪用于NDACC和TCCON网络中,以验证2级卫星数据,但它们的尺寸和重质量较大,使其不足以进行现场运动。为了克服这些问题,最近研究了便携式光谱仪的使用。在此上下文中,本文涉及克里斯(紧凑型高光谱分辨率红外光谱仪)原型,具有独特的特性,如其高光谱分辨率(0.135厘米(-1)非加强)及其宽频谱范围(680至5200厘米( -1))。其主要目标是在热和短波红外区域中的气体和气溶胶的表征。这就是为什么它需要高辐射精度和精度,这是通过执行本文中描述的光谱和辐射级校准来实现的。此外,通过完整的信息内容分析,频道选择和错误预算估计来提出克里斯来检索垂直二氧化碳和CH4型材的能力,该试图加入诸如魔术的持续运动(通过多仪器监测大气组成和温室气体的监测竞选人员)监控GHG并验证实际和未来的空间任务,如IASI-NG和MicroMarb。

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