Air-gap interrogation of surface plasmon resonance in otto configuration

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Abstract

In this study, a micromachined chip in Otto configuration with multiple air-gaps (1.86 µm, 2.42 µm, 3.01 µm, 3.43 µm) was fabricated, and the resonance characteristics for each air-gap was measured with a 980 nm laser source. To verify the variability of the reflectance characteristics of the Otto configuration and its applicability to multiple gas detection, the air-gap between the prism and metal film was adjusted by using a commercial piezoactuator. We experimentally verified that the SPR characteristics of the Otto chip configuration have a dependence on the air-gap distance and wavelength of the incident light. When a light source having a wavelength of 977 nm is used, the minimum reflectance becomes 0.22 when the displacement of the piezoactuator is about 9.3 µm.

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Lee, Y., Kim, J., Sim, S., Llamas-Garro, I., & Kim, J. (2021). Air-gap interrogation of surface plasmon resonance in otto configuration. Micromachines, 12(8). https://doi.org/10.3390/mi12080998

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