中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
First experiment of spectrometric observation of hydroxyl emission and rotational temperature in the mesopause in China

文献类型:期刊论文

作者Zhu YaJun; Xu JiYao; Yuan Wei; Liu Xiao
刊名SCIENCE CHINA-TECHNOLOGICAL SCIENCES
出版日期2012
卷号55期号:5页码:1312-1318
关键词SMART spectrometer OH airglow rotational temperature mesopause
ISSN号1674-7321
通讯作者Xu, JY (reprint author), Chinese Acad Sci, State Key Lab Space Weather, Ctr Space Sci & Appl Res, Beijing 100190, Peoples R China.
中文摘要A SpectroMeter of Atmospheric RadiaTion (SMART) was developed and installed at the Xinglong station of the National Astronomical Observatories in Hebei province, China, which was supported by the Meridian Project [1]. The experimental tests of spectrometric observation of the hydroxyl emission and rotational temperature in China were conducted for the first time on the night of February 23, 2011 and the night of April 27, 2011, respectively. OH 6-2 band and OH 8-3 band spectra were measured and the rotational temperature was retrieved. Hourly average temperatures (186.82+/-6.40) K of OH 8-3 band and (178.07+/-6.73) K of OH 6-2 band were derived from the spectra observed on the night of February 23, 2011. Intensities and rotational temperature against local time were determined by the spectra measured in the whole night of April 27, 2011. The rotational temperature was consistent with the spatial average temperature of NRLMSISE00 empirical model at height 83-91 km and the average temperature of TIMED/SABER from April to May of seven years at height 83-91 km, with some discrepancies. The results showed that the new instrument and the retrieval method of the rotational temperature can give reasonable results of the airglow emission of OH and the temperature of mesopause.
英文摘要A SpectroMeter of Atmospheric RadiaTion (SMART) was developed and installed at the Xinglong station of the National Astronomical Observatories in Hebei province, China, which was supported by the Meridian Project [1]. The experimental tests of spectrometric observation of the hydroxyl emission and rotational temperature in China were conducted for the first time on the night of February 23, 2011 and the night of April 27, 2011, respectively. OH 6-2 band and OH 8-3 band spectra were measured and the rotational temperature was retrieved. Hourly average temperatures (186.82+/-6.40) K of OH 8-3 band and (178.07+/-6.73) K of OH 6-2 band were derived from the spectra observed on the night of February 23, 2011. Intensities and rotational temperature against local time were determined by the spectra measured in the whole night of April 27, 2011. The rotational temperature was consistent with the spatial average temperature of NRLMSISE00 empirical model at height 83-91 km and the average temperature of TIMED/SABER from April to May of seven years at height 83-91 km, with some discrepancies. The results showed that the new instrument and the retrieval method of the rotational temperature can give reasonable results of the airglow emission of OH and the temperature of mesopause.
学科主题空间物理
收录类别SCI ; EI
资助信息National Natural Science Foundation of China [41074109, 40890165, 40921063, 41004063]; National Important Basic Research Project of China [2011-CB811405]; Specialized Research Fund for State Key Laboratories
语种英语
公开日期2014-12-15
源URL[http://ir.nssc.ac.cn/handle/122/3072]  
专题国家空间科学中心_空间科学部
推荐引用方式
GB/T 7714
Zhu YaJun,Xu JiYao,Yuan Wei,et al. First experiment of spectrometric observation of hydroxyl emission and rotational temperature in the mesopause in China[J]. SCIENCE CHINA-TECHNOLOGICAL SCIENCES,2012,55(5):1312-1318.
APA Zhu YaJun,Xu JiYao,Yuan Wei,&Liu Xiao.(2012).First experiment of spectrometric observation of hydroxyl emission and rotational temperature in the mesopause in China.SCIENCE CHINA-TECHNOLOGICAL SCIENCES,55(5),1312-1318.
MLA Zhu YaJun,et al."First experiment of spectrometric observation of hydroxyl emission and rotational temperature in the mesopause in China".SCIENCE CHINA-TECHNOLOGICAL SCIENCES 55.5(2012):1312-1318.

入库方式: OAI收割

来源:国家空间科学中心

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