High-sensitivity methane sensor composed of photonic quasi-crystal fiber based on surface plasmon resonance

A photonic quasi-crystal fiber (PQF) methane sensor based on surface plasmon resonance (SPR) is designed and described. The double-side polished six-fold photonic quasi-crystal fiber coated with a silver film produces enhanced SPR effects and sensitivity. A nanostructured thin film with cryptophane-...

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Veröffentlicht in:Journal of the Optical Society of America. A, Optics, image science, and vision Optics, image science, and vision, 2021-10, Vol.38 (10), p.1438-1442
Hauptverfasser: Liu, Qiang, Zhao, Jin, Sun, Yudan, Liu, Wei, Liu, Chao, Lv, Jingwei, Lv, Tingting, Jiang, Yu, Li, Binwen, Wang, Famei, Sun, Tao, Chu, Paul K
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Sprache:eng
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Zusammenfassung:A photonic quasi-crystal fiber (PQF) methane sensor based on surface plasmon resonance (SPR) is designed and described. The double-side polished six-fold photonic quasi-crystal fiber coated with a silver film produces enhanced SPR effects and sensitivity. A nanostructured thin film with cryptophane-E-doped polysiloxane is deposited on silver as the methane-sensitive surface layer and to mitigate oxidation of silver. The sensor is analyzed and optimized numerically by the full-vector finite element method. For methane concentrations in the range of  0% to 3.5%, the maximum sensitivity of the sensor is 8 nm/%, and the average sensitivity is 6.643 nm/%. Compared to traditional gas sensors, this sensor provides accurate sensing of methane besides offering advantages such as the low cost, miniaturized size, online monitoring, and immunity to electromagnetic field interference.
ISSN:1084-7529
1520-8532
DOI:10.1364/JOSAA.432045