Building blocks for a two-frequency laser lidar-radar: a preliminary study.
暂无分享,去创建一个
Fabien Bretenaker | Daniel Dolfi | Marc Brunel | Albert Le Floch | N. D. Lai | M. Brunel | F. Bretenaker | D. Dolfi | J. Huignard | L. Morvan | A. Le Floch | Jean-Pierre Huignard | Loïc Morvan | Ngoc D Lai
[1] B. Stann,et al. Intensity‐modulated diode laser radar using frequency‐modulation/continuous‐wave ranging techniques , 1996 .
[2] V. M. Contarino,et al. Application of RADAR technology to aerial LIDAR systems for enhancement of shallow underwater target detection , 1995 .
[3] Horst Weber,et al. Modeling of passively Q-switched lasers , 2000 .
[4] Fabien Bretenaker,et al. Stabilization of the repetition rate of passively Q-switched diode-pumped solid-state lasers , 2001 .
[5] Paul F. McManamon,et al. Optical-fiber preamplifiers for ladar detection and associated measurements for improving the signal-to-noise ratio , 1994 .
[6] N. Olsson. Lightwave systems with optical amplifiers , 1989 .
[7] Katsumi Midorikawa,et al. Absorption and oscillation characteristics of a pulsed Cr/sup 4+/:YAG laser investigated by a double-pulse pumping technique , 1999 .
[8] Edward A. Watson,et al. Required energy for a laser radar system incorporating a fiber amplifier or an avalanche photodiode. , 1995, Applied optics.
[9] Fan Tso Yee. Effect of finite lower level lifetime on Q-switched lasers , 1988 .
[10] D. B. Coyle,et al. Effects of thermalization on Q-switched laser properties , 1998 .
[11] Peter R. Herczfeld,et al. Hybrid lidar-radar ocean experiment , 1996, Summaries of papers presented at the Conference on Lasers and Electro-Optics.
[12] M. Brunel,et al. Control of the pulse duration in one- and two-axis passively Q-switched solid-state lasers , 2002, CLEO 2002.
[13] R M Schotland,et al. Dual-frequency Doppler-lidar method of wind measurement. , 1980, Applied optics.
[14] P. Di Bin,et al. Offset phase locking of Er,Yb:glass laser eigenstates for RF photonics applications , 2001, IEEE Photonics Technology Letters.
[15] Fabien Bretenaker,et al. Experimental and theoretical study of monomode vectorial lasers passively Q switched by a Cr 4+ : yttrium aluminum garnet absorber , 1999 .
[16] Michael Hercher,et al. An analysis of saturable absorbers. , 1967, Applied optics.
[17] Fabien Bretenaker,et al. Tunable Two-Frequency Lasers for Lifetime Measurements , 1997 .
[18] L. Mullen,et al. Microwave-modulated transmitter design for hybrid LIDAR-RADAR , 1995, Proceedings of 1995 IEEE MTT-S International Microwave Symposium.
[19] Todd D. Steiner,et al. Ten-kilometer imaging solid-state ladar demonstration , 1994 .
[20] J. Huignard,et al. Large-field-of-view, high-gain, compact diode-pumped Nd:YAG amplifier. , 1997, Optics letters.
[21] D Letalick,et al. All-Fiber Multifunction Continuous-Wave Coherent Laser Radar at 1.55 num for Range, Speed, Vibration, and Wind Measurements. , 2000, Applied optics.
[22] Michael Bass,et al. Z-scan measurement of the ground and excited state absorption cross sections of Cr/sup 4+/ in yttrium aluminum garnet , 1999 .
[23] O. Steinvall,et al. Effects of target shape and reflection on laser radar cross sections. , 2000, Applied optics.