用于自由空间互连的微机械集成光学

L. Lin, S. S. Lee, Ming C. Wu, K. Pister
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引用次数: 33

摘要

介绍了一种新型的表面微加工微光学工作台。自由空间微光学器件,如微菲涅耳透镜、可旋转镜、分束器和光栅,采用类似ic的微加工工艺在单个硅芯片上实现。自对准混合集成半导体激光器也首次得到证实。MOB技术在单片硅片上实现了微光学系统,对自由空间集成光学、光交换、光数据存储和光电子封装等领域具有重要影响。空间。利用这种新技术,可以在单个硅片上完整地制作三维微光学元件。硅衬底作为“微光学工作台(MOB)”,利用计算机辅助设计在掩模布局阶段预先对准微透镜、反射镜、光栅和其他光学元件,然后通过微加工构建。附加的精细调整可以通过片上微致动器和微定位器如旋转和平移阶段来实现。通过混合集成有源光学器件,可以在MOB上构建一个完整的光学系统,如图1所示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Micromachined integrated optics for free-space interconnections
A novel surface micro-machined micro-optical bench (MOB) has been demonstrated. Free-space micro-optics such as micro-Fresnel lenses, rotatable mirrors, beam-splitters and gratings are implemented on a single Si chip using IC-like microfabrication processes. Self-aligned hybrid integration with semiconductor lasers are also demonstrated for the first time. The MOB technology realizes a microoptical system on a single Si chip and has significant impact on free-space integrated optics, optical switching, optical data storage, and optoelectronic packaging. free-space. Using this new technique, threedimensional micro-optical components can be fabricated integrally on a single Si chip. The Si substrate serves as a “micro-optical bench (MOB)” on which micro-lenses, mirrors, gratings and other optical components are pre-aligned in the mask layout stage using computer-aided design and then constructed by microfabrication. Additional fine adjustment can be achieved by the on-chip micro-actuators and micropositioners such as rotational and translational stages. With hybrid integration of active optical devices, a complete optical system can be constructed on the MOB, as illustrated in Fig. 1.
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