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Frequency-modulated continuous-wave multiplexed gas sensing based on optical frequency comb calibration

校准 光学频率梳 频率梳 多路复用 光学 物理 声学 材料科学 电子工程 计算机科学 电信 工程类 激光器 量子力学
作者
Linhua Jia,Xinghua Qu,Fumin Zhang
出处
期刊:Chinese Physics B [IOP Publishing]
标识
DOI:10.1088/1674-1056/ad5980
摘要

Abstract Laser absorption spectroscopy has proven to be an effective approach for gas sensing, which plays an important role in the fields of military, industrial, medical and basic research. This paper presents a multiplexed gas sensing system based on optical frequency comb (OFC) calibrated frequency-modulated continuous-wave (FMCW) tuning nonlinearity. The system can be used for multi-parameter synchronous measurement of gas absorption spectrum and multiplexed optical path. Mul-ti-channel parallel detection is realized by combining wavelength division multiplexing (WDM) and frequency division multiplexing (FDM) techniques. By introducing nonlinear optical crystals, broadband spectrum detection is simultaneously achieved over a bandwidth of hundreds of nanometers. An OFC with ultra-high frequency stability is used as the frequency calibration source, which guarantees the measurement accuracy. The test samples involve H 13 C 14 N, C 2 H 2 and Rb vapor cells of varying densities and 5 parallel measurement experiments are designed. The results show that the measurement accuracies of spectral absorption line and the optical path are 150 MHz and 20 μm, respectively. The scheme offers the advantages of multiplexed, multi-parameter, wide spectrum and high resolution detection, which can realize the identification of multi-gas components and the high-precision inversion of absorption lines under different environments. The proposed sensor demonstrates great potential in the field of high-resolution absorption spectrum measurement for gas sensing applications.
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