Vernier effect-based tunable mid-infrared sensor using silicon-on-insulator cascaded rings
Author(s) -
Yuhua Chang,
Bowei Dong,
Yiming Ma,
Jingxuan Wei,
Zhihao Ren,
Chengkuo Lee
Publication year - 2020
Publication title -
optics express
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.382226
Subject(s) - materials science , silicon on insulator , resonator , optoelectronics , photonics , vernier scale , refractive index , infrared , optics , coupled mode theory , silicon , silicon photonics , physics
Vernier effect has been captivated as a promising approach to achieve high-performance photonic sensors. However, experimental demonstration of such sensors in mid-infrared (MIR) range, which covers abundant absorption fingerprints of molecules, is still lacking. Here, we report Vernier effect-based thermally tunable photonic sensors using cascaded ring resonators fabricated on the silicon-on-insulator (SOI) platform. The radii and the coupling gaps in two rings are investigated as key design parameters. By applying organic liquids on our device, we observe an envelope shift of 48 nm with a sensitivity of 3000 nm/RIU and an intensity drop of 6.7 dB. Besides, our device can be thermally tuned with a sensitivity of 0.091 nm/mW. Leveraging the characteristic molecular absorption in the MIR, our work offers new possibilities for complex index sensing, which has wide applications in on-chip photonic sensors.
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