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Calibration of the 1064 nm lidar channel using water phase and cirrus clouds
11
Citations
28
References
2011
Year
EngineeringMeasurementEducationWater PhaseCirrus CloudsCalibration ProcedureSky Radiometer InversionsEarth ScienceCalibrationAtmospheric ScienceAerosol SamplingCalibration TechniquesLaser-based SensorInstrumentationAtmospheric SensingRadiation MeasurementCloud PhysicRadiometrySensor CalibrationNm Lidar ChannelRemote Sensing
Calibration is essential to derive aerosol backscatter coefficients from elastic scattering lidar. Unlike the visible UV wavelengths where calibration is based on a molecular reference, calibration of the 1064 nm lidar channel requires other approaches, which depend on various assumptions. In this paper, we analyze two independent calibration methods which use (i) low-altitude water phase clouds and (ii) high cirrus clouds. In particular, we show that to achieve optimal performance, aerosol attenuation below the cloud base and cloud multiple scattering must be accounted for. When all important processes are considered, we find that these two independent methods can provide a consistent calibration constant with relative differences less than 15%. We apply these calibration techniques to demonstrate the stability of our lidar on a monthly scale, along with a natural reduction of the lidar efficiency on an annual scale. Furthermore, our calibration procedure allows us to derive consistent aerosol backscatter coefficients and angstrom coefficient profiles (532-1064 nm) along with column extinction-to-backscatter ratios which are in good agreement with sky radiometer inversions.
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