Fast-switching system for injection seeding of a high-power Ti:sapphire laser.
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Volker Wulfmeyer | Gerhard Ehret | Max Schiller | Andreas Fix | A. Fix | G. Ehret | V. Wulfmeyer | H. Khalesifard | Hamid R Khalesifard | M. Schiller
[1] J. Wolf,et al. Dual-wavelength diode-seeded Ti:sapphire laser for differential absorption lidar applications. , 1997, Applied optics.
[2] G. Yin,et al. Pulsed Ti:sapphire laser seeded off the gain peak. , 1996, Applied optics.
[3] J. Bösenberg,et al. Ground-based differential absorption lidar for water-vapor and temperature profiling: methodology. , 1998, Applied optics.
[4] J. Bösenberg,et al. Injection-seeded alexandrite ring laser: performance and application in a water-vapor differential absorption lidar. , 1995, Optics letters.
[5] Jonathan Tennyson,et al. The Water Vapor Spectrum in the Region 8600-15 000 cm(-1): Experimental and Theoretical Studies for a New Spectral Line Database. , 2001, Journal of molecular spectroscopy.
[6] J. Bösenberg,et al. Injection-seeded pulsed Ti:sapphire laser with novel stabilization scheme and capability of dual-wavelength operation. , 2005, Applied optics.
[7] Gerhard Ehret,et al. The airborne multi-wavelength water vapor differential absorption lidar WALES: system design and performance , 2009 .
[8] P. Dupré,et al. Quasi-Fourier-transform limited, scannable, high energy titanium-sapphire laser source for high resolution spectroscopy. , 2007, The Review of scientific instruments.
[9] E V Browell,et al. Temperature sensitivity of differential absorption lidar measurements of water vapor in the 720-nm region. , 1991, Applied optics.
[10] J. Bösenberg,et al. Ground-based differential absorption lidar for water-vapor profiling: assessment of accuracy, resolution, and meteorological applications. , 1998, Applied optics.
[11] P. Hering,et al. Widely tunable diffraction limited 1000 mW external cavity diode laser in Littman/Metcalf configuration for cavity ring-down spectroscopy , 2006 .
[12] Volker Wulfmeyer,et al. 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 system. , 2005, Applied optics.
[13] J. Bösenberg,et al. Single-mode operation of an injection-seeded alexandrite ring laser for application in water-vapor and temperature differential absorption lidar. , 1996, Optics letters.
[14] T. Raymond,et al. Injection-seeded titanium-doped-sapphire laser. , 1991, Optics letters.
[15] C. Walther,et al. Future Performance of Ground-Based and Airborne Water-Vapor Differential Absorption Lidar. II. Simulations of the Precision of a Near-Infrared, High-Power System. , 2001, Applied optics.
[16] C. Walther,et al. Future performance of ground-based and airborne water-vapor differential absorption lidar. I. Overview and theory. , 2001, Applied optics.
[17] J. C. Barnes,et al. Injection seeding. II. Ti:Al/sub 2/O/sub 3/ experiments , 1993 .
[18] James C. Barnes,et al. Development of the Lidar Atmospheric Sensing Experiment (LASE): An Advanced Airborne DIAL Instrument , 1997 .
[19] G. Poberaj,et al. Diode-laser-seeded optical parametric oscillator for airborne water vapor DIAL application in the upper troposphere and lower stratosphere , 1998 .
[20] Peter Mahnke,et al. Fast tuning of external-cavity diode lasers. , 2002, Applied optics.
[21] R V Hess,et al. Pulsed injection control of a titanium-doped sapphire laser. , 1986, Optics letters.
[22] J. Streicher,et al. Lidar: Range-Resolved Optical Remote Sensing of the Atmosphere , 2005 .
[23] Theodor W. Hänsch,et al. A compact grating-stabilized diode laser system for atomic physics , 1995 .
[24] C. Hamilton. Single-frequency, injection-seeded Ti:sapphire ring laser with high temporal precision. , 1992, Optics letters.
[25] N. Laurendeau,et al. Laser-induced fluorescence measurements in lean direct-injection spray flames: technique development and application , 2000 .
[26] O. Uchino,et al. Comparative study of spectral narrowing of a pulsed Ti:Sapphire laser using pulsed and CW injection seeding , 1996 .
[27] V. Wulfmeyer,et al. Ground-based differential absorption lidar for water-vapor and temperature profiling: development and specifications of a high-performance laser transmitter. , 1998, Applied optics.
[28] Markus B. Raschke,et al. Conference on Lasers and Electro-Optics/Quantum Electronics and Laser Science Conference and Photonic Applications Systems Technologies , 2006 .