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Application of tungsten oxide thin film in the photonic crystal cavity for hydrogen sulfide gas sensing

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Abstract In this work, we report the design and simulation of a high sensitivity hydrogen sulfide (H2S) gas sensor based on the Ln slot photonic crystal cavity. To improve the… Click to show full abstract

Abstract In this work, we report the design and simulation of a high sensitivity hydrogen sulfide (H2S) gas sensor based on the Ln slot photonic crystal cavity. To improve the sensitivity of the sensor, a layer of tungsten oxide (WO3) is coated on the inner walls of the slot. Change in concentration of H2S varies the refractive index of WO3 and leads a more wavelength shift in the output transmittance spectrum of the sensor which increases the sensitivity. We showed that the proposed sensor possesses an ultra-high sensitivity up to 2.3× 105 nmRIU−1, and a high Q factor of 3 ×103.

Keywords: hydrogen sulfide; sensitivity; tungsten oxide; crystal cavity; photonic crystal

Journal Title: Optik
Year Published: 2021

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