Monolithically integrated, broadband, high-efficiency silicon nitride-on-silicon waveguide photodetectors in a visible-light integrated photonics platform

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作者
Yiding Lin
Zheng Yong
Xianshu Luo
Saeed Sharif Azadeh
Jared C. Mikkelsen
Ankita Sharma
Hong Chen
Jason C. C. Mak
Patrick Guo-Qiang Lo
Wesley D. Sacher
Joyce K. S. Poon
机构
[1] Max Planck Institute of Microstructure Physics,Department of Electrical and Computer Engineering
[2] University of Toronto,undefined
[3] Advanced Micro Foundry Pte Ltd,undefined
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Nature Communications | / 13卷
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摘要
Visible and near-infrared spectrum photonic integrated circuits are quickly becoming a key technology to address the scaling challenges in quantum information and biosensing. Thus far, integrated photonic platforms in this spectral range have lacked integrated photodetectors. Here, we report silicon nitride-on-silicon waveguide photodetectors that are monolithically integrated in a visible light photonic platform on silicon. Owing to a leaky-wave silicon nitride-on-silicon design, the devices achieved a high external quantum efficiency of >60% across a record wavelength span from λ ~ 400 nm to ~640 nm, an opto-electronic bandwidth up to 9 GHz, and an avalanche gain-bandwidth product up to 173 ± 30 GHz. As an example, a photodetector was integrated with a wavelength-tunable microring in a single chip for on-chip power monitoring.
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