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Title: Ethane detection with mid-infrared hollow-core fiber photothermal spectroscopy
Authors: Chen, FF 
Jiang, SL 
Jin, W 
Bao, HH 
Ho, HL 
Wang, C 
Gao, SF 
Issue Date: Dec-2020
Source: Optics express, 7 Dec. 2020, v. 28, no. 25, p. 38115-38126
Abstract: We report a compact mid-infrared (MIR) photothermal spectroscopic ethane (C2H6) sensor with a hollow-core negative-curvature-fiber (HC-NCF) gas cell. The HC-NCF supports low-loss transmission of an MIR pump (3.348 mu m) and a near-infrared (NIR) probe (1.55 mu m). The pump and probe laser beams are launched into the gas cell from the opposite ends of the HC-NCF, allowing independent MIR pump delivery and NIR fiber-optic probe circuitry. The use of Fabry-Perot as the probe interferometer simplifies the sensor design and suppresses the common-mode noise in the lead in/out single-mode fiber. With a 14-cm-long HC-NCF, an ethane sensor system with the limit of detection (LOD) of 13 parts-per-billion (ppb) is achieved with 1 s lock-in time constant. The LOD goes down to 2.6 ppb with 410 s average time, which corresponds to noise equivalent absorption (NEA) of 2.0x10(-6) and is a record for the hollow-core fiber MIR gas sensors. The system instability is 2.2% over a period of 8 hours. (C) 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
Publisher: Optical Society of America
Journal: Optics express 
EISSN: 1094-4087
DOI: 10.1364/OE.410927
Rights: © 2020 Optical Society of America under the terms of the OSA Open Access Publishing Agreement (https://www.osapublishing.org/library/license_v1.cfm#VOR-OA)
Users may use, reuse, and build upon the article, or use the article for text or data mining, so long as such uses are for non-commercial purposes and appropriate attribution is maintained. All other rights are reserved.
The following publication Feifan Chen, Shoulin Jiang, Wei Jin, Haihong Bao, Hoi Lut Ho, Chao Wang, and Shoufei Gao, "Ethane detection with mid-infrared hollow-core fiber photothermal spectroscopy," Opt. Express 28, 38115-38126 (2020) is available at https://doi.org/10.1364/OE.410927.
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