Self-Aligned Optical Fiber Put-in Micro-Connectors

K. Iga, T. Baba
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引用次数: 0

Abstract

In future optical fiber communication systems including large scale networks like a broad band ISDN, a large amount of joint connections at fibers and optical components should be employed. Moreover, a parallel lightwave system may be viable in optical interconnects for computers. Thus, the most important issue is the light coupling between semiconductor lasers or photonic devices and optical fibers. However, the alignment of optical components is left being complicated and needs very precise alignment, although several authors have reported integrated couplers [1][2]. In order to solve this problem, a planar microlens array was invented [3][4], and we have demonstrated a novel "put-in micro-connector" as shown in Fig. 1 [5] [6] . In this paper, we review its concept and some experimental demonstrations. We are able to couple single mode fibers and devices with no precise adjustment. We use a GRIN planar microlens array and self-aligned positioning of optical fibers. Its advantages and related technologies will be presented. Also, related activities in other groups will be reviewed.
自对准光纤插入式微连接器
在未来的光纤通信系统中,包括像宽带ISDN这样的大规模网络,需要采用大量的光纤和光器件的联合连接。此外,平行光波系统在计算机光互连中可能是可行的。因此,最重要的问题是半导体激光器或光子器件与光纤之间的光耦合。然而,光学元件的对准仍然很复杂,需要非常精确的对准,尽管一些作者已经报道了集成耦合器[1][2]。为了解决这一问题,我们发明了一种平面微透镜阵列[3][4],并展示了一种新型的“置入式微连接器”,如图1[5][6]所示。本文综述了它的概念和一些实验证明。我们能够耦合单模光纤和器件,而无需精确调整。我们使用GRIN平面微透镜阵列和光纤自对准定位。介绍其优点及相关技术。此外,还将审查其他小组的相关活动。
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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