13 October 2015 CO2 sensing with a 1.432 μm Nd:YAlO3 laser
Author Affiliations +
Abstract
A smoothly tunable 1.432  μmNd:YAlO3 laser was assembled for potential remote sensing of atmospheric CO2 at high altitudes. Continuous laser tuning from 6982.8 to 6984.6  cm1 was demonstrated, and CO2 absorption lines relatively free of atmospheric water absorption interference at 6983 and 6984  cm1 were experimentally observed, confirming feasibility of atmospheric CO2 sensing.
© 2015 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2015/$25.00 © 2015 SPIE
Simon Vana, William M. Grossman, Kenneth L. Schepler, Dennis K. Killinger, Steven M. Jarrett, John F. Black, and Larry Myers "CO2 sensing with a 1.432 μm Nd:YAlO3 laser," Optical Engineering 54(10), 106104 (13 October 2015). https://doi.org/10.1117/1.OE.54.10.106104
Published: 13 October 2015
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Carbon monoxide

Absorption

Neodymium

Gas lasers

Carbon dioxide lasers

Atmospheric sensing

Atmospheric laser remote sensing

RELATED CONTENT

Cr2+ ZnSe laser for mid IR remote sensing of atmospheric...
Proceedings of SPIE (November 19 2015)
Laser processing with high-power gas lasers
Proceedings of SPIE (March 31 1995)
Long Life Operation Of CO2 Mini-Tea Lasers
Proceedings of SPIE (August 22 1980)
Frequency chirped differential absorption LIDAR
Proceedings of SPIE (October 03 2006)
Fixed Frequency Lasers
Proceedings of SPIE (March 01 1974)

Back to Top