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The role of the coupling system in pigtailing of semiconductor optical amplifiers

机译:耦合系统在半导体光放大器尾纤中的作用

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摘要

In this some analysis on three different coupling systems, i.e., butt, single ball lens, and two ball lenses between the tips of two coupled single mode fiber in semiconductor optical amplifier (SOA) module are presented. The coupling components inside the module are aligned carefully in an active aliment process and attached using Nd:YAG laser welding with dual laser beams. The tips of the coupled fiber are ferruled inside metallic tubes to enable the attachment to the substrates through saddle-shaped welding clips. Investigations of the variations of coupling efficiency with the workig distance for the three schemes showed that the butt coupling scheme can prove high coupling efficiency but the working distance is very critical. At 100 um the coupling efficiency is reduced into 40%. Single ball lens provides 100% coupling efficiency at a tolerant working distance around 0.3mm between the two coupled fibers. But a difficulty arises in its positioning before or after the semiconductor chip. The two ball lenses scheme is found to be more efficient and longitudinally tolerant for this application. Moreover, it has been found that there is an optimum range around 1 mm for the separation between the two lenses at which the coupling efficiency is maximum with tolerant misalignments.
机译:在此分析中,提出了三种不同的耦合系统,即对接,单球透镜和半导体光放大器(SOA)模块中两个耦合的单模光纤的尖端之间的两个球透镜。模块内部的耦合组件在主动调整过程中仔细对齐,并使用Nd:YAG激光焊接和双激光束进行连接。耦合光纤的尖端在金属管内穿线,以通过鞍形焊接夹将其固定到基板上。对三种方案的耦合效率随工作距离的变化的研究表明,对接耦合方案可以证明较高的耦合效率,但工作距离非常关键。在100 um时,耦合效率降低到40%。单球透镜在两条耦合光纤之间的约0.3mm的容许工作距离处提供100%的耦合效率。但是在将其定位在半导体芯片之前或之后会出现困难。对于该应用,发现两个球形透镜方案更加有效并且在纵向上是可容忍的。此外,已经发现,对于两个透镜之间的间隔,在1mm附近存在最佳范围,在该范围处,耦合效率最大且容忍未对准。

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