4.3 Article

High-sensitive transmission type of gas sensor based on guided-mode resonance in coupled gratings

Journal

JOURNAL OF MODERN OPTICS
Volume 65, Issue 13, Pages 1601-1608

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/09500340.2018.1456572

Keywords

Guided-mode resonance; gas sensor; Fabry-Perot-like resonance; coupled gratings

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A new type of high-sensitive transmission gas sensor based on the coupled gratings (CGs) and the corresponding Fabry-Perot-like (FP-like) model for evaluating the resonance peaks are presented. The estimated locations of the FP-like resonance obtained by this theoretical model are well agreed with those of the exact results. It is shown that a narrow FP-like channel with high transmissivity occurs in the opaque background of the CGs, and its location is shifted linearly with the variation of the refractive index (RI) of the gaseous analyte. The transmission peak of the sideband can be selected as a reference, and it remains nearly fixed as the RI of the analyte is varied. Good sensing properties of the CGs sensor can be maintained, regardless of whether the two grating membranes are laterally aligned or not. The sensitivity of the CGs sensor is immune to the variation of the RI of the substrate. By selecting the higher order FP-like mode (m=4), sensitivity as high as 748nm/RIU with the figure of merit of 374 can be achieved.

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