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A pair of integrated optoelectronic transceiving chips for optical interconnects 被引量:1

A pair of integrated optoelectronic transceiving chips for optical interconnects
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摘要 In this Letter, a pair of integrated optoelectronic transceiving chips is proposed. They are constructed by integrating a vertical cavity surface emitting laser unit above a positive-intrinsic-negative photodetector unit. One of the transceiving chips emits light at the wavelength of 848.1 nm with a threshold current of 0.8 mA and a slope efficiency of 0.81 W/A. It receives light between 801 and 814 nm with a quantum efficiency of higher than 70%. On its counterpart, the other one of the transceiving chips emits light at the wavelength of 805.3 nm with a threshold current of 1.1 mA and a slope efficiency of 0.86 W/A. It receives light between 838 and 855 nm with a quantum efficiency of higher than 70%. The proposed pair of integrated optoelectronic transceiving chips can work full-duplex with each other, and they can be applied to single fiber bidirectional optical interconnects. In this Letter, a pair of integrated optoelectronic transceiving chips is proposed. They are constructed by integrating a vertical cavity surface emitting laser unit above a positive-intrinsic-negative photodetector unit. One of the transceiving chips emits light at the wavelength of 848.1 nm with a threshold current of 0.8 mA and a slope efficiency of 0.81 W/A. It receives light between 801 and 814 nm with a quantum efficiency of higher than 70%. On its counterpart, the other one of the transceiving chips emits light at the wavelength of 805.3 nm with a threshold current of 1.1 mA and a slope efficiency of 0.86 W/A. It receives light between 838 and 855 nm with a quantum efficiency of higher than 70%. The proposed pair of integrated optoelectronic transceiving chips can work full-duplex with each other, and they can be applied to single fiber bidirectional optical interconnects.
作者 Kai Liu Huize Fan Yongqing Huang Xiaofeng Duan Qi Wang Xiaomin Ren Qi Wei and Shiwei Cai 刘凯;范惠泽;黄永清;段晓峰;王琦;任晓敏;位祺;蔡世伟(State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications)
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第9期46-50,共5页 中国光学快报(英文版)
基金 supported by the Fund of State Key Laboratory of Information Photonics and Optical Communications(No.IPOC2016ZT10) the National Natural Science Foundation of China(Nos.61574019,61674020,and 61674018) the Specialized Research Fund for the Doctoral Program of Higher Education of China(No.20130005130001) the 111 Project(No.B07005)
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