NASA NTRS · 20010072441
Compact Ozone Differential Absorption Lidar (DIAL) Transmitter Using Solid-State Dye Polymers
Abstract
A new potential DIAL laser transmitter is described that uses solid-state dye laser materials to make a simpler, more compact, lower mass laser system. Two solid-state dye laser materials were tested to evaluate their performance in a laser oscillator cavity end pumped by a pulsed Nd:YAG laser at 532 nm. The polymer host polymethyl-methacrylate was injected with a pyrromethene laser dye, PM 580, or PM 597. A narrowband laser oscillator cavity was constructed to produce visible wavelengths of 578 and 600 nm which were frequency doubled into the UV region (299 or 300 nm) by using a BBO crystal, resulting in a maximum energy of 11 mJ at a wavelength of 578 nm when pumped by the Nd:YAG laser at an energy of 100 mJ (532 nm). A maximum output energy of 378 microJ was achieved in the UV region at a wavelength of 289 nm but lasted only 2000 laser shots at a repetition rate of 10 Hz. The results are promising and show that a solid-state dye laser based ozone DIAL system is possible with improvements in the design of the laser transmitter.
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Jones, Alton L., Jr., DeYoung, Russell J., Elsayid-Ele, Hani. 2001-07-01. Compact Ozone Differential Absorption Lidar (DIAL) Transmitter Using Solid-State Dye Polymers. https://ntrs.nasa.gov/citations/20010072441
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