Source-noise limitation of fiber-optic methane sensors
Author:
Publisher
The Optical Society
Reference8 articles.
1. Remote sensing of methane gas by differential absorption measurement using a wavelength tunable DFB LD
2. Remote detection of methane with a 166-μm diode laser
3. Absorption measurement of methane gas with a broadband light source and interferometric signal processing
4. Evanescent wave methane detection using optical fibres
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