Investigation of a novel silicon-on-insulator rib-slot photonic sensor based on the vernier effect and operating at 3.8 μm

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Abstract

In this paper, we present the theoretical investigation of photonic sensors based on Vernier effect with two cascade-coupled ring resonators in silicon on insulator technology. The photonic chip utilizes rib and slot waveguides designed to operate at 3.8 μm mid infrared wavelength, where a number of harmful gases, chemical and biochemical analytes are spectroscopically accessible. A rigorous algorithmic procedure has been implemented for the design of such devices and novel technological solutions have been proposed according to very recent experimental results. The rib-slot sensor architecture can exhibit wavelength sensitivities as high as 20.6 μm/RIU and limits of detection for homogeneous sensing as low as 3.675 ×10-4 RIU. © The Authors. All rights reserved.

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Troia, B., & Passaro, V. M. N. (2014). Investigation of a novel silicon-on-insulator rib-slot photonic sensor based on the vernier effect and operating at 3.8 μm. Journal of the European Optical Society, 9. https://doi.org/10.2971/jeos.2014.14005

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