All Single-Mode-Fiber Supercontinuum Source Setup for Monitoring of Multiple Gases Applications

Sensors
Javier A Martin-VelaRoberto Rojas-Laguna

Abstract

In this paper, a gas sensing system based on a conventional absorption technique using a single-mode-fiber supercontinuum source (SMF-SC) is presented. The SC source was implemented by channeling pulses from a microchip laser into a one kilometer long single-mode fiber (SMF), obtaining a flat high-spectrum with a bandwidth of up to 350 nm in the region from 1350 to 1700 nm, and high stability in power and wavelength. The supercontinuum radiation was used for simultaneously sensing water vapor and acetylene gas in the regions from 1350 to 1420 nm and 1510 to 1540 nm, respectively. The experimental results show that the absorption peaks of acetylene have a maximum depth of approximately 30 dB and contain about 60 strong lines in the R and P branches, demonstrating a high sensitivity of the sensing setup to acetylene. Finally, to verify the experimental results, the experimental spectra are compared to simulations obtained from the Hitran database. This shows that the implemented system can be used to develop sensors for applications in broadband absorption spectroscopy and as a low-cost absorption spectrophotometer of multiple gases.

References

Jan 5, 2006·Optics Letters·T RitariH Ludvigsen
Aug 23, 2004·Optics Express·T RitariH Simonsen
Sep 3, 2007·Optics Express·Johan HultClemens F Kaminski
Jan 1, 2010·Sensors·Helen WaechterHans-Peter Loock
Jul 10, 2018·Scientific Reports·Johannes EmmertSteven Wagner
May 3, 2019·Optics Express·Rasmus Dybbro Engelsholm, Ole Bang

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Methods Mentioned

BETA
Differential Absorption Spectroscopy

Software Mentioned

OSA

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