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Lidars are of great interest because of their unique capabilities in remote sensing applications in sounding of the atmosphere, meteorology, and climatology. In this small business innovative research (SBIR) phase II program, laser sources including Co: MgF2, CTH: YAG, CTH: YSGG, CT: YAG, and Er: Glass were evaluated. Modulator of fused silica and TeO2 materials with Brewster's angle end faces wer
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Lidars are of great interest because of their unique capabilities in remote sensing applications in sounding of the atmosphere, meteorology, and climatology. In this small business innovative research (SBIR) phase II program, laser sources including Co: MgF2, CTH: YAG, CTH: YSGG, CT: YAG, and Er: Glass were evaluated. Modulator of fused silica and TeO2 materials with Brewster's angle end faces were used with these lasers as acousto-optical (AO) Q-switches. A higher hold-off energy and hence a higher Q-switched energy was obtained by using a high power RF driver. The report provides performance characteristics of these lasers. The tunable (1.75-2.50 microns) Co: MgF2 laser damaged the TeO2 Q-switch cell. However, the CTH: YAG laser operating at 2.09 microns provided output energy of over 300 mJ/p in 50 ns pulse width using the fused silica Q-switch. This Q-switched CTH: YAG laser was used in a breadboard vertical aerosol profiler. A 40 cm diameter telescope, InSb and InGaAs detectors were used in the receiver. The data obtained using this lidar is provided in the report. The data shows that the eye safe lidar using CTH: YAG laser for the vertical aerosol density and range measurements is the viable approach. Acharekar, M. A. Unspecified Center NAS1
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