首页> 外文会议>Conference on Lasers and Electro-Optics >InGaAs/InP p-i-n photodiodes integrated with AlGaAs/GaAs optical waveguides and air-bridge coplanar metal waveguides using total internal reflectors
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InGaAs/InP p-i-n photodiodes integrated with AlGaAs/GaAs optical waveguides and air-bridge coplanar metal waveguides using total internal reflectors

机译:使用全内反射器与AlgaAs / GaAs光波导和空气桥共面金属波导集成的IngaAs / InP P-I-N光电二极管

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Summary form only given. Monolithic optoelectronic integrated circuits (OEICs) are of considerable interest for future optical communications systems in the 1.3-1.6 /spl mu/m wavelength range due to the significant reduction in interconnections and ease of assembly. For some OEIC applications, it is useful to use GaAs substrates instead of InP because of the mature fabrication technology for electronic components on GaAs. For high-speed device applications, air-bridge coplanar metal waveguides are an attractive means to interconnect high-speed photodiodes, which results in a reduction of the parasitic capacitance of the diodes. Of the various waveguide photodiode integration approaches, total internal-reflection (TIR) mirror vertical coupling is regrowth-free and applicable to single and double heterostructure waveguides. In the paper, we used a thin InP buffer layer, grown by solid source molecular beam epitaxy, to suppress the dislocations between In/sub 0.53/Ga/sub 0.47/As/InP photodiode and AlGaAs/GaAs waveguide layers. The GaAs-based optical waveguide couples light to the p-i-n InGaAs photodetector by an etched, vertically deflecting TIR mirror.
机译:摘要表格仅给出。单片光电子集成电路(OEICS)是用于在1.3-1.6 / SPL亩/米的波长范围内的未来光通信系统相当大的兴趣,由于在互连的显著减少和缓解的组装。对于一些应用光电集成,它是有用的使用GaAs衬底代替磷化铟,因为成熟的制造技术,在GaAs的电子元件。对于高速设备应用,空气桥共面金属波导是一个有吸引力的手段来互连高速光电二极管,这导致降低了二极管的寄生电容的。的各波导光电二极管集成方法,全内反射(TIR)镜垂直耦合是再生长和无适用于单,双异质结构的波导。在论文中,我们使用了一个薄的InP缓冲层,由固体源分子束外延生长,以抑制输入/分0.53 / GA /分0.47 / AS /磷化铟光电二极管和的AlGaAs之间的位错/砷化镓波导层。 GaAs基光波导耦合通过蚀刻,垂直偏转TIR镜光至P-I-N光检测器的InGaAs。

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