Light turning mirrors for hybrid integration of optical waveguides in SiON technology and CMOS based photo-detectors

F. Çivitci, A. Driessen, H. Hoekstra
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引用次数: 2

Abstract

An efficient connection of integrated optical components and photo-detectors (PDs) is very important to realize small size and high functionality optoelectronic devices. A number of techniques have been reported to provide such a connection. One of these uses a focusing grating coupler on top of a waveguide (WG) to focus the light to the PD above the WG [1]. However, high volume production of such devices is not possible because no mask can be used to define the grating, owing to its relatively small period. Another technique uses a focused ion beam to mill total internal reflection (TIR) mirrors, but this technique is also not suitable for high volume production [2]. The third technique is based on a metal mirror, at which the desired mirror angle is fabricated by using a superficial layer in the wet etching process [3]. The efficiency of the mirrors is very high, but the thermal budget of the fabrication process is low because the melting temperature of metal layer used in the mirror is low.
光波导与CMOS光电探测器混合集成的转光镜
集成光学元件与光电探测器的高效连接是实现小尺寸、高功能光电器件的重要途径。据报道,有许多技术可以提供这种连接。其中一种是使用波导(WG)顶部的聚焦光栅耦合器将光聚焦到WG上方的PD[1]。然而,这种器件的大批量生产是不可能的,因为由于其相对较小的周期,没有掩模可以用来定义光栅。另一种技术使用聚焦离子束来磨全内反射(TIR)镜,但这种技术也不适合大批量生产[2]。第三种技术是基于金属镜面,在湿法蚀刻工艺中使用表面层来制造所需的镜面角度[3]。反射镜的效率很高,但由于反射镜所用金属层的熔化温度较低,制造过程的热预算较低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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