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Applied Optics|June 18, 2010
Electromagnetic field enhancement in small liquid droplets using geometric opticsM A Jarzembski, V SrivastavaApplied Optics|March 6, 2008
Interference of backscatter from two droplets in a focused continuous-wave CO2 Doppler lidar beamM A Jarzembski, V SrivastavaJournal of the Optical Society of America. A, Optics, Image Science, and Vision|October 12, 2000
Spectral analysis of vibrational harmonic motion by use of a continuous-wave CO2 Doppler lidarM A Jarzembski, V SrivastavaOptics Letters|September 24, 2009
Laser-induced stimulated Raman scattering in the forward direction of a droplet: comparison of Mie theory with geometrical opticsV Srivastava, M A JarzembskiApplied Optics|February 28, 2008
Comparison of Continuous-Wave CO(2) Lidar Calibration by Use of Earth-Surface Targets in Laboratory and Airborne MeasurementsM A Jarzembski, V SrivastavaApplied Optics|February 29, 2008
Vertical variability of aerosol backscatter from an airborne-focused continuous-wave CO2 lidar at 9.1-microm wavelengthM A Jarzembski, V Srivastava, J RothermelApplied Optics|August 20, 2010
Comparison of calculated aerosol backscatter at 9.1- and 2.1-microm wavelengthsV Srivastava, M A Jarzembski, D A BowdleApplied Optics|November 19, 2010
Lidar calibration technique using laboratory-generated aerosolsM A Jarzembski, V Srivastava, D M ChambersApplied Optics|June 22, 2010
Pressure dependence of the laser-induced breakdown thresholds of gases and dropletsP Chylek, M A Jarzembski, V Srivastava, et al.Applied Optics|November 19, 2010
Signal processing and calibration of continuous-wave focused CO(2) Doppler lidars for atmospheric backscatter measurementJ Rothermel, D M Chambers, M A Jarzembski, et al.Pageof 10