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A comparison of OH nightglow volume emission rates as measured by SCIAMACHY and SABER

机译:Scimachy和Saber测量的牡鸽子体积排放率的比较

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摘要

Hydroxyl (OH) short-wave infrared emissions arising from OH(4-2, 5-2, 8-5, 9-6) as measured by channel 6 of the SCanning Imaging Absorption spectroMeter for Atmospheric CHartographY (SCIAMACHY) are used to derive concentrations of OH(v = 4, 5, 8, and 9) between 80 and 96 km. Retrieved concentrations are used to simulate OH(5-3, 4-2) integrated radiances at 1.6 mu m and OH(9-7, 8-6) at 2.0 mu m as measured by the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument, which are not fully covered by the spectral range of SCIAMACHY measurements. On average, SABER "unfiltered" data are on the order of 40% at 1.6 mu m and 20% at 2.0 mu m larger than the simulations using SCIAMACHY data. "Unfiltered" SABER data are a product, which accounts for the shape, width, and transmission of the instrument's broadband filters, which do not cover the full ro-vibrational bands of the corresponding OH transitions. It is found that the discrepancy between SCIAMACHY and SABER data can be reduced by up to 50 %, if the filtering process is carried out manually using published SABER interference filter characteristics and the latest Einstein coefficients from the HITRAN database. Remaining differences are discussed with regard to model parameter uncertainties and radiometric calibration.
机译:由OH(4-2,5-2,8-5,9-6)产生的羟基(OH)短波红外发射,如扫描成像吸收光谱仪的通道6用于大气图(SCIMACHY)的通道6所测量的OH(v = 4,5,8和9)的浓度在80至96公里之间。通过使用宽带发射辐射测量的大气探测(以下SABER)仪器,其不完全被SCIMACHY测量的光谱范围完全覆盖。平均而言,SABER“未过滤的”数据约为40%,比使用SCIMACHY数据的模拟大2.0亩,20%。 “未过滤的”Sabre数据是一种产品,其占仪器宽带滤波器的形状,宽度和传输,该宽带滤波器不会覆盖相应OH转换的全RO振动频带。发现,如果使用已发布的Sabre干扰滤波器特性和来自HITRAN数据库的最新EINSTEIN系数,手动执行过滤过程,则股脚建静和SABER数据之间的差异可以减少到50%。关于模型参数不确定性和辐射校准,讨论了剩余差异。

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