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Single-Mode Optical Coupling Technology Using Movable Micro-Mirror Array and Surface-Emitting DFB Laser Array for High-Density 3-D Integration

机译:使用可移动微镜阵列和表面发射DFB激光阵列的单模光学耦合技术用于高密度3-D集成

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Technologies for high-density integration of optical and electrical components are indispensable for next-generation optical transceivers whose capacity will exceed 400 Gbps. 3-D vertical integration technology with high optical coupling efficiency between a single mode fiber (SMF) array and lens-integrated surface emitting laser (LISEL) array using micro electro mechanical system (MEMS)-based movable micro-mirrors can meet this requirement. Light emitted from the LISEL is reflected at the micro-mirror and coupled to the SMF. Since the micro-mirror can steer the beam emitted from the LISEL to the SMF, the coupling efficiency that depends on the alignment accuracy between the LISEL and SMF is adjustable. After the alignment is completed, the position of the micro-mirror is fixed to keep high coupling efficiency. An optical sub-assembly (OSA) incorporating the LISEL, micro-mirror, and SMF array was fabricated using surface mount technology. All optical components were passively aligned, and the positions of micro-mirrors were adjusted to make a precise optical coupling to the SMFs as a post alignment. To confirm the effectiveness of this post-alignment system, the characteristics of the optical coupling to the SMF array were measured. It was found that the position of the reflected beam could be controlled to sub-micro-meter accuracy.
机译:光和电组件的高密度集成技术对于容量将超过400 Gbps的下一代光收发器来说是必不可少的。使用基于微电子机械系统(MEMS)的可移动微镜在单模光纤(SMF)阵列与透镜集成的表面发射激光器(LISEL)阵列之间具有高光耦合效率的3-D垂直集成技术可以满足此要求。 LISEL发出的光在微镜处反射并耦合到SMF。由于微镜可以将LISEL发射的光束转向SMF,因此取决于LISEL和SMF之间对准精度的耦合效率是可调的。对准完成后,微镜的位置将固定,以保持较高的耦合效率。使用表面安装技术制造了包含LISEL,微镜和SMF阵列的光学组件(OSA)。所有光学组件都进行了被动对准,并且微镜的位置也进行了调整,以精确对准SMF进行光学耦合,以作为后期对准。为了确认该对准后系统的有效性,测量了与SMF阵列的光耦合特性。发现可以将反射光束的位置控制到亚微米精度。

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