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Design and Performance of the Vegetation Canopy Lidar (VCL) Laser Transmitter

2002 IEEE AEROSPACE CONFERENCE PROCEEDINGS, VOLS 1-7(2002)

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altimeters,compensation,cooling,heat pipes,lenses,neodymium,optical collimators,optical focusing,optical pumping,optical radar,optical resonators,remote sensing by laser beam,solid lasers,thermal management (packaging),vegetation mapping,1.5 mm,10 ns,100 mm,1064 nm,15 mJ,25 C,809 nm,MBLA earth orbit mission,Nd:YAG pump bands,Nd:YAG vegetation canopy LIDAR laser transmitters,Q-switched diode side-pumped zig-zag slab lasers,VCL,YAG:Nd,YAl5O12:Nd,active thermal control,beam expanders,change-of-state elements,coupler Gaussian reflectivity profile,graded reflectivity output couplers,heat-pipes,inversion density change,laser pulses,laser temperature range,light detection/ranging,multi beam laser altimeters,output beam circular symmetry,output divergence limiters,paraxia modeling,passive cooling,power conserving conductively cooled design,pump diode radiation collimation/focussing,pump radiation spectral profile overlap,shot count performance changes,thermal compensating lens optimum location,thermal lens compensation,thermal lens temperature dependance,thermal radiator panels,undoped YAG cylindrical lenses,unstable resonators,z-directed beam x/y portions
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