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具有紧凑光学垂直互连通道的薄SOI上的异质集成III-V族激光器。

Heterogeneously integrated III-V laser on thin SOI with compact optical vertical interconnect access.

作者信息

Pu Jing, Lim Kim Peng, Ng Doris Keh Ting, Krishnamurthy Vivek, Lee Chee Wei, Tang Kun, Seng Kay Anthony Yew, Loh Ter Hoe, Wang Qian

出版信息

Opt Lett. 2015 Apr 1;40(7):1378-81. doi: 10.1364/OL.40.001378.

Abstract

A new heterogeneously integrated III-V/Si laser structure is reported in this report that consists of a III-V ridge waveguide gain section on silicon, III-V/Si optical vertical interconnect accesses (VIAs), and silicon-on-insulator (SOI) nanophotonic waveguide sections. The III-V semiconductor layers are introduced on top of the 300-nm-thick SOI layer through low temperature, plasma-assisted direct wafer-bonding and etched to form a III-V ridge waveguide on silicon as the gain section. The optical VIA is formed by tapering the III-V and the beneath SOI in the same direction with a length of 50 μm for efficient coupling of light down to the 600 nm wide silicon nanophotonic waveguide or vice versa. Fabrication details and specification characterizations of this heterogeneous III-V/Si Fabry-Perot (FP) laser are given. The fabricated FP laser shows a continuous-wave lasing with a threshold current of 65 mA at room temperature, and the slope efficiency from single facet is 144  mW/A. The maximal single facet emitting power is about 4.5 mW at a current of 100 mA, and the side-mode suppression ratio is ∼30  dB. This new heterogeneously integrated III-V/Si laser structure demonstrated enables more complex laser configuration with a sub-system on-chip for various applications.

摘要

本报告报道了一种新型的异质集成III-V族/硅激光结构,它由硅上的III-V族脊形波导增益区、III-V族/硅光学垂直互连通道(VIA)和绝缘体上硅(SOI)纳米光子波导区组成。通过低温等离子体辅助直接晶圆键合,将III-V族半导体层引入到300纳米厚的SOI层顶部,并进行蚀刻,以在硅上形成III-V族脊形波导作为增益区。光学VIA是通过将III-V族和下方的SOI沿同一方向逐渐变细形成的,长度为50μm,以便将光有效地耦合到600nm宽的硅纳米光子波导中,反之亦然。给出了这种异质III-V族/硅法布里-珀罗(FP)激光器的制造细节和规格表征。制造的FP激光器在室温下表现出阈值电流为65mA的连续波激光发射,单面斜率效率为144mW/A。在100mA电流下,最大单面发射功率约为4.5mW,边模抑制比约为30dB。所展示的这种新型异质集成III-V族/硅激光结构能够实现更复杂的激光配置,并带有用于各种应用的片上子系统。

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