The Department of Meteorology at Stockholm University operates the Esrange Rayleigh/Raman lidar at Esrange(68° N, 21° E) near the Swedish city of Kiruna. This paper describes the design and first measurements of the newpure rotational-Raman channel of the Esrange lidar. The Esrange lidar uses a pulsed Nd:YAG solid-state laser operating at 532 nm as light source with a repetition rate of 20 Hz and a pulse energy of 350 mJ. The minimum vertical resolution is 150m and the integration time for one profile is 5000 shots. The newly implemented channel allows for measurements of atmospheric temperature at altitudes below 35 km and is currently optimized for temperature measurements between 180 and 200 K. This corresponds to conditions in the lower...
We describe a practical implementation of rotational Raman (RR) measurements in an existing Mie-Rama...
International audienceSounding of the atmospheric temperature by lidar has mostly been limited to Ra...
A concept of innovative rotational Raman lidar with daylight measurement capability is proposed to m...
The Department of Meteorology at Stockholm University operates the Esrange Rayleigh/Raman lidar at E...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. A ...
The depletion of stratospheric ozone is caused by chlorine species formed in heterogeneous processes...
At University of Hohenheim we have developed the first scanning rotational Raman lidar. This instrum...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
Using the Hampton University (HU) Mie and Raman lidar, tropospheric temperature profiles were inferr...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
A Raman lidar system was used to measure the temperature profile of the upper troposphere and lower ...
We describe a practical implementation of rotational Raman (RR) measurements in an existing Mie-Rama...
We describe a practical implementation of rotational Raman (RR) measurements in an existing Mie-Rama...
International audienceSounding of the atmospheric temperature by lidar has mostly been limited to Ra...
A concept of innovative rotational Raman lidar with daylight measurement capability is proposed to m...
The Department of Meteorology at Stockholm University operates the Esrange Rayleigh/Raman lidar at E...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. It...
International audienceThe temperature is a fundamental parameter for meteorology and climatology. A ...
The depletion of stratospheric ozone is caused by chlorine species formed in heterogeneous processes...
At University of Hohenheim we have developed the first scanning rotational Raman lidar. This instrum...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
Using the Hampton University (HU) Mie and Raman lidar, tropospheric temperature profiles were inferr...
International audienceA lidar method using the anti-Stokes rotational lines of N/sub 2/ and O/sub 2/...
A Raman lidar system was used to measure the temperature profile of the upper troposphere and lower ...
We describe a practical implementation of rotational Raman (RR) measurements in an existing Mie-Rama...
We describe a practical implementation of rotational Raman (RR) measurements in an existing Mie-Rama...
International audienceSounding of the atmospheric temperature by lidar has mostly been limited to Ra...
A concept of innovative rotational Raman lidar with daylight measurement capability is proposed to m...