Xueyan Li
Jilin University
24 Papers
5 Citations
Xueyan Li is an academic researcher from Jilin University. The author has contributed to research in topics: Computer science & Avalanche photodiode. The author has an hindex of 2, co-authored 6 publications.
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Papers
Wide-steering-angle high-resolution optical phased array
Yingzhi Li,Baisong Chen,Quanxin Na,Qijie Xie,Min Tao,Lanxuan Zhang,Zihao Zhi,Yuxuan Li,Xiaobin Liu,Xianshu Luo,Guo-Qiang Lo,Fengli Gao,Xueyan Li,Junfeng Song +13 more
TL;DR: In this article, the authors designed two high-performance 128-channel OPAs fabricated on a multilayered SiN-on-SOI platform to achieve a wide steering angle and high resolution without beam aliasing.
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Investigation and demonstration of a high-power handling and large-range steering optical phased array chip.
Lanxuan Zhang,Yingzhi Li,Yu Hou,Yu-Bing Wang,Min Tao,Bo-Song Chen,Quanxin Na,Yuxuan Li,Zihao Zhi,Xiaobin Liu,Xueyan Li,Fengli Gao,Xianshu Luo,Guo-Qiang Lo,Junfeng Song +14 more
TL;DR: In this paper, a 64-channel SiN-Si based one-dimensional (1D) OPA chip has been designed to handle high beam power to achieve large scanning range.
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Two-dimensional multi-layered SiN-on-SOI optical phased array with wide-scanning and long-distance ranging.
Lanxuan Zhang,Yingzhi Li,Baisong Chen,Yubing Wang,H. Li,Yu Hou,Min Tao,Yuxuan Li,Z.Y. Zhi,Xiaobin Liu,Xuetong Li,Quanxin Na,Qijie Xie,Ming Zhang,Xueyan Li,Fengli Gao,Xianshu Luo,Guoqiang Li,Junfeng Song +18 more
TL;DR: In this article , a SiN-on-SOI two-dimensional optical phased array (OSA) chip was designed and fabricated to achieve a 2D scanning range of 96°×14.4° and 690 mW peak power of the main lobe.
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High-Data-Rate and Wide-Steering-Range Optical Wireless Communication Via Nonuniform-Space Optical Phased Array
Yingzhi Li,Baisong Chen,Quanxin Na,Min Tao,Xiaobin Liu,Z.Y. Zhi,Tao Peng,Xuetong Li,Xianshu Luo,Guo-qiang Lo,Fengli Gao,Xueyan Li,Qijie Xie,Junfeng Song +13 more
TL;DR: In this article , the authors demonstrate high-data-rate and long-range optical wireless communication (OWC) using an integrated Silicon-Silicon Nitride OPA chip with 12 mm large aperture.
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A Novel Three-Terminal Germanium-on-Silicon Avalanche Photodiode with Extended p-charge layer for Dark Current Reduction
Xiaobin Liu,Xuetong Li,Yingzhi Li,Yuxuan Li,Z.Y. Zhi,Min Tao,Baisong Chen,Lanxuan Zhang,Pengfei Guo,Guoqiang Li,Xueyan Li,Fengli Gao,Bonan Kang,Junfeng Song +13 more
TL;DR: In this article , a surface illuminated Ge-on-Si APD with three terminals was proposed to achieve a low dark current and improved responsivity, which can meet the requirements of autonomous driving and other applications demanding weak light detection.
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