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Widely Tunable Semiconductor Laser at 1650nm for Greenhouse Gas LIDAR Detection
Completed
TRL 3 (started at 2, targeting 3)
Description
Methane is about 23 times more potent at trapping infrared radiation than carbon dioxide. The development of low-cost, accurate remote methane sensing technologies is becoming increasingly critical with the need to accurately analyze methane concentrations and distributions throughout the atmosphere. A "Laser Sounder" method is successfully used for carbon dioxide detection, and it utilizes a commercial, telecom grade tunable laser. In this program, we propose to develop a 1651 nm widely tunable laser, which will be based on wavelength scaling of our commercial, rad-hard tunable laser platform, currently available at 1300nm and 1550nm. This laser will allow the same LIDAR technique to be applied to Methane.
Benefits
Gas sensing and monitoring - aerial and space based sensors. Contact information for NASA personnel related to this program: 1) Dr. Haris Riris, Optical Physicist, Code 694, NASA GSFC, Greenbelt, MD 20771 Haris.Riris@nasa.gov, 301-614-6736 2) Dr. Michael A. Krainak, Branch Head, Laser & Electro-Optics Branch, Code 554, NASA GSFC, Greenbelt, MD 20771, Michael.A.Krainak@nasa.gov, 301-614-6797
Air quality measurement systems; spectroscopy applications; telecom sources (applications) at new wavelengths.
Details
| Technology area | Sensors and Instruments > Remote Sensing Instruments and Sensors > Lasers |
| Program | Small Business Innovation Research/Small Business Tech Transfer (SBIR/STTR) |
| Lead organization | Freedom Photonics, LLC, Santa Barbara, CA |
| Start date | 2016-06-10 |
| End date | 2016-12-09 |
Project contacts
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How to get involved
This is early/mid-stage (TRL 3) — the most realistic path in is NASA SBIR/STTR, which funds small businesses and research institutions to develop technology aligned with NASA's needs (equity-free, phased funding). Check whether a current SBIR/STTR solicitation topic overlaps with this project's technology area, or contact the project directly (above) to ask.
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