Geophysical Research Letters · 2002 · 34 citations · 13 references
Arctic EngineeringEngineeringPolar EnvironmentsEarth ScienceAtmospheric OpticsParticle Optical PropertiesAtmospheric ScienceOptical PropertiesParticle Depolarization RatioAtmospheric SensingCloud PhysicsMeteorologyAtmospheric IcingCloud DynamicRadiation MeasurementCloud PhysicOptical Particle SizingClimate DynamicsSpaceborne RemoteCirrus‐cloud ParticlesRemote SensingOptical Remote SensingLidar Measurements
Lidar measurements of Arctic (67.9°N) cirrus clouds reveal a strong positive correlation between particle depolarization ratio and extinction‐to‐backscatter (lidar) ratio for ambient cloud temperatures above ∼−45°C, and an anti‐correlation for colder temperatures. Similar correlations are evident in a 2‐year midlatitude (53.5°N) cirrus data set. These data suggest that robust relationships may exist between these particle optical properties that will facilitate the retrieval of cirrus extinction profiles from polarization‐sensitive (spaceborne) elastic‐backscatter lidars.
13
Lidar inversion with variable backscatter/extinction ratios
James D. Klett · Applied Optics · 1985 · 1.1K citations
Cloud Microphysics and Climate
M. B. Baker · Science · 1997 · 358 citations