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Multistage second-order microring-resonator filters with box-like spectral responses and relaxed fabrication tolerances
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作者 Haiyang Zhao Lei Zhang +3 位作者 Sizhu Shao Jianfeng Ding Xin Fu Lin Yang 《Journal of Semiconductors》 EI CAS CSCD 2017年第11期86-90,共5页
We demonstrate an optical filter based on multistage second-order microring resonators(MRs) with box-like spectral responses. Compared with single-stage high-order optical filters with the same number of MRs,the dem... We demonstrate an optical filter based on multistage second-order microring resonators(MRs) with box-like spectral responses. Compared with single-stage high-order optical filters with the same number of MRs,the demonstrated structure has comparable performances in the aspects of passband flatness, rolling-off slope and insertion loss. Moreover, the architecture relaxes the fabrication tolerance, electrical wiring and tuning difficulty since there are only two MRs in each stage. We experimentally demonstrate this kind of optical filter with five stages, which shows a 3-dB bandwidth of ~17 GHz, a rolling-off slope of ~5 dB/GHz and an on-chip insertion loss of ~6 dB. 展开更多
关键词 wavelength division multiplexing optical filter microring resonator
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Two-Channel Highly Sensitive Sensors Based on 4 × 4 Multimode Interference Couplers
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作者 Trung-Thanh LE 《Photonic Sensors》 SCIE EI CAS CSCD 2017年第4期357-364,共8页
We propose a new kind of microring resonators (MRR) based on 4 × 4 multimode interference (MMI) couplers for multichannel and highly sensitive chemical and biological sensors. The proposed sensor structure ha... We propose a new kind of microring resonators (MRR) based on 4 × 4 multimode interference (MMI) couplers for multichannel and highly sensitive chemical and biological sensors. The proposed sensor structure has advantages of compactness and high sensitivity compared with the reported sensing structures. By using the transfer matrix method (TMM) and numerical simulations, the designs of the sensor based on silicon waveguides are optimized and demonstrated in detail. We apply our structure to detect glucose and ethanol concentrations simultaneously. A high sensitivity of 9000 nm/RIU, detection limit of 2 × 10^-4 for glucose sensing and sensitivity of 6000 nm/RIU, detection limit of 1.3 × 10^-5 for ethanol sensing are achieved. 展开更多
关键词 Biological sensors chemical sensors optical microring resonators high sensitivity multimodeinterference transfer matrix method beam propagation method (BPM) multichannel sensor
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