Rotational vibrational-rotational Raman lidar:: Design and performance of the RASC Raman lidar at Shigaraki (34.8° N, 136.1° E), Japan

被引:3
|
作者
Behrendt, A [1 ]
Nakamura, T [1 ]
Sawai, Y [1 ]
Onishi, M [1 ]
Tsuda, T [1 ]
机构
[1] Kyoto Univ, Radio Sci Ctr Space & Atmosphere, Uji, Kyoto 6110011, Japan
关键词
lidar; laser remote sensing; Raman lidar; rotational Raman lidar; rotational vibrational-rotational Raman lidar; temperature; humidity; aerosols; daytime lidar; cirrus;
D O I
10.1117/12.452774
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The design and the performance of the new Raman lidar of the Radio Science Center for Space and Atmosphere (RASC) at Kyoto University are presented. The system is located at (34.8degrees N, 136.1degrees E) near Shigaraki, Japan, where also one of the world largest atmospheric radars, the MU (middle and upper atmosphere) radar, is operated. Measurement parameters of the lidar are atmospheric temperature (with rotational Raman and with Rayleigh integration technique), water vapor mixing ratio (H2O Raman lidar technique), and optical particle properties. Common Raman lidar takes vibrational-rotational Raman backscatter of nitrogen as a reference signal. In contrast to this, our system makes use of the approximately 10-times stronger pure-rotational Raman signals for deriving both atmospheric temperature and a temperature independent Raman reference signal. This modification leads to a significant reduction of measurement uncertainties. With the RASC lidar, rotational Raman signals with, to our best knowledge, unprecedented intensity can be taken by means of a high-throughput receiver. This allows not only nighttime temperature measurements with a resolution of, e.g., a few minutes near the tropopause, but made also, to our knowledge, the first daytime measurements possible.
引用
收藏
页码:151 / 162
页数:12
相关论文
共 50 条
  • [41] RESEARCH ON THE RELATIONSHIP BETWEEN CLOUD TEMPERATURE AND OPTICAL DEPTH USING ROTATIONAL AND VIBRATIONAL RAMAN LIDAR
    Su, Jia
    McCormick, M. Patrick
    Lei, Liqiao
    27TH INTERNATIONAL LASER RADAR CONFERENCE (ILRC 27), 2016, 119
  • [42] Design and Simulation of Pure Rotational Raman Lidar System for Daytime Detection of Atmospheric Temperature
    Gao Fei
    Huang Bo
    Shi Dongchen
    Zhu Qingsong
    Zhang Rui
    Wang Li
    Li Shichun
    Hua Dengxin
    ACTA OPTICA SINICA, 2019, 39 (03)
  • [43] Daytime Temperature Measuring LIDAR System by Using Rotational Raman Signal
    Yoon, Moonsang
    Kim, Dukhyeon
    Park, Sunho
    Sin, MyeongJae
    Kim, Yonggi
    Jung, Haedoo
    KOREAN JOURNAL OF OPTICS AND PHOTONICS, 2012, 23 (04) : 159 - 166
  • [44] Solar background radiation temperature calibration of a pure rotational Raman lidar
    Jayaweera, Vasura
    Sica, Robert J.
    Martucci, Giovanni
    Haefele, Alexander
    ATMOSPHERIC MEASUREMENT TECHNIQUES, 2025, 18 (06) : 1461 - 1469
  • [45] Comparative analysis of calibration functions in the pure rotational Raman lidar technique
    Vladislav V. Gerasimov
    Applied Physics B, 2018, 124
  • [46] Comparative analysis of calibration functions in the pure rotational Raman lidar technique
    Gerasimov, Vladislav V.
    APPLIED PHYSICS B-LASERS AND OPTICS, 2018, 124 (07):
  • [47] Absolute calibration of LIDAR Thomson scattering systems by rotational Raman scattering
    Scannell, R.
    Beurskens, M.
    Kempenaars, M.
    Naylor, G.
    Walsh, M.
    O'Gorman, T.
    Pasqualotto, R.
    REVIEW OF SCIENTIFIC INSTRUMENTS, 2010, 81 (04):
  • [48] A Novel Calibration Method for Pure Rotational Raman Lidar Temperature Profiling
    He, Jingxi
    Chen, Siying
    Zhang, Yinchao
    Guo, Pan
    Chen, He
    JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2018, 123 (19) : 10925 - 10934
  • [49] Study of absolute detection technique with the rotational Raman lidar for atmospheric temperature
    Li, Shichun
    Wei, Pengpeng
    Gong, Xin
    Hua, Dengxin
    AOPC 2015: TELESCOPE AND SPACE OPTICAL INSTRUMENTATION, 2015, 9678
  • [50] Broadband CCD detection system for rotational Raman lidar studies of the troposphere
    Norton, EG
    Povey, IM
    South, AM
    Jones, RL
    LIDAR REMOTE SENSING FOR INDUSTRY AND ENVIRONMENT MONITORING, 2001, 4153 : 657 - 663