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Ground-based millimeter-wave observations of ozone in the upper stratosphere and mesosphere over Tsukuba

机译:筑波上空平流层和中层大气中臭氧的地面毫米波观测

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We present ground-based millimeter-wave observations of the upper stratospheric and mesospheric ozone, conducted at the National Institute for Environmental Studies (NIES) in Tsukuba, Japan (36° N, 140° E). The measurements were started in October 1995. The millimeter-wave radiometer used for the present study is equipped with the superconductor-insulator-superconductor (SIS) mixer receiver and the acousto-optical spectrometer (AOS). Vertical profiles of ozone mixing ratio from 20 to 80 km were retrieved from the observed ozone spectra for 23 months from October 1996 to August 1998 by using the weighted-damped least squares algorithm adopted for differential emission. Vertical resolution is estimated to be 14 km from the averaging kernels. The total random error on the retrieval is estimated to range from 3 to 13% in summer, and from 2 to 9% in winter, respectively, between 38 and 76 km in altitude. The ozone number density at 38 km with the radiometer which was convolved with the vertical resolution of the lidar agrees well with that of the lidar within a systematic difference of 1%, indicating that the millimeter-wave data at 38 km are validated by the lidar measurements. Annual and semi-annual variations are clearly seen at 50 and 76 km, respectively, in the time series of the ozone mixing ratio observed during 23 months. The annual variation at 50 km is consistent with that in the climatological models. The semi-annual variation at 76 km observed in this work is similar to that of the Solar Mesospheric Explorer (SME) data, except that the ozone mixing ratio in spring measured with SME is about 1.7 times larger than that in autumn while those with the radiometer are almost same.
机译:我们介绍了在日本筑波(36°N,140°E)的国家环境研究所(NIES)进行的平流层和中层上方臭氧的地面毫米波观测。测量始于1995年10月。用于本研究的毫米波辐射计配备了超导体-绝缘体-超导体(SIS)混合接收器和声光光谱仪(AOS)。从1996年10月至1998年8月的23个月的观测臭氧光谱中,采用差分发射的加权阻尼最小二乘法提取了20至80 km臭氧混合比的垂直剖面。垂直分辨率估计距离平均内核14 km。估计总的随机误差在夏季的3%至13%之间,在冬季的2%至9%之间,分别在38至76 km的高度之间。用辐射计与激光雷达的垂直分辨率卷积的38 km处的臭氧数密度与激光雷达的臭氧数密度在1%的系统差异内非常吻合,这表明38 km处的毫米波数据已由激光雷达验证测量。在23个月内观察到的臭氧混合比的时间序列中,分别在50 km和76 km处可以看到年度和半年度变化。 50 km处的年变化与气候模式一致。在这项工作中,观测到的76 km处的半年度变化与太阳中球总管(SME)的数据相似,不同的是,春季使用SME测得的臭氧混合比大约是秋季的1.7倍,而使用SME测得的臭氧的混合比要大。辐射计几乎相同。

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