In this paper, we demonstrated the design and experimental results of the near-infrared lab-on-a-chip optical biosensor platform that monolithically integrates the MRR and the on-chip spectrometer on the silicon-on-insulator (SOI) wafer, which can eliminate the external optical spectrum analyzer for scanning the wavelength spectrum. The symmetric add-drop MRR biosensor is designed to have a free spectral range (FSR) of ∼19 nm and a bulk sensitivity of ∼73 nm/RIU; then the drop-port output resonance peaks are reconstructed from the integrated spatial-heterodyne Fourier transform spectrometer (SHFTS) with the spectral resolution of ∼3.1 nm and the bandwidth of ∼50 nm, which results in the limit of detection of 0.042 RIU.
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Yoo, Kyoung Min ; Fan, Kang-Chieh ; An, Yue ; Hlaing, May ; Jain, Sourabh ; Chen, Ray T. ( , CLEO 2023)
We demonstrated the design and experimental results of the near-infrared lab-on-a-chip optical biosensor platform that monolithically integrates the micro-ring-resonator and the on-chip spectrometer on the SOI wafer with the limit of detection of 0.042 RIU.
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Jain, Sourabh ; Hlaing, May H. ; Chen, Ray T ( , CLEO)
An engineered structure based on InGaAs-InP subwavelength grating waveguide is proposed on QCL/QCD platform for sensing application. The proposed structure attribute slow light effect with fine group index tuning capability of 0.48nm/K using thermo-optic effect.
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Jain, Sourabh ; Hlaing, May H. ; Shin, Jong D. ; Midkiff, Jason ; Yoo, Kyoung Min ; Rostamian, Ali ; Chen, Ray T. ( , SPIE OPTO, 2022)Schröder, Henning ; Chen, Ray T. (Ed.)