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Environmental Pollution (Barking, Essex : 1987)|August 21, 2007
Trends in airborne particulates in Stuttgart, Germany: 1972-2005Vadim Cercasov, Volker WulfmeyerProceedings of the National Academy of Sciences of the United States of America|September 5, 2019
Deliberate enhancement of rainfall using desert plantationsOliver Branch, Volker WulfmeyerOptics Express|June 6, 2009
Simulations of thermal lensing of a Ti:Sapphire crystal end-pumped with high average powerGerd Wagner, Max Shiler, Volker WulfmeyerOptics Express|October 29, 2020
Minimization of the Rayleigh-Doppler error of differential absorption lidar by frequency tuning: a simulation studyFlorian Späth, Andreas Behrendt, Volker WulfmeyerApplied Optics|November 17, 2011
Detailed performance modeling of a pulsed high-power single-frequency Ti:sapphire laserGerd Wagner, Volker Wulfmeyer, Andreas BehrendtApplied Optics|April 3, 2008
Development of an eye-safe solid-state tunable laser transmitter in the 1.4-1.5 microm wavelength region based on Cr4+:YAG crystal for lidar applicationsAnna Petrova-Mayor, Volker Wulfmeyer, Petter WeibringApplied Optics|April 21, 2006
Spaceborne profiling of atmospheric temperature and particle extinction with pure rotational Raman lidar and of relative humidity in combination with differential absorption lidar: performance simulationsPaolo Di Girolamo, Andreas Behrendt, Volker WulfmeyerOptics Express|May 3, 2018
Space-borne profiling of atmospheric thermodynamic variables with Raman lidar: performance simulationsPaolo Di Girolamo, Andreas Behrendt, Volker WulfmeyerApplied Optics|February 25, 2005
Diode-pumped Nd:YAG master oscillator power amplifier with high pulse energy, excellent beam quality, and frequency-stabilized master oscillator as a basis for a next-generation lidar systemMartin Ostermeyer, Philip Kappe, Ralf Menzel, et al.Applied Optics|May 15, 2013
High-power Ti:sapphire laser at 820 nm for scanning ground-based water-vapor differential absorption lidarGerd Wagner, Andreas Behrendt, Volker Wulfmeyer, et al.Pageof 2