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首页> 外文期刊>Lightwave Technology, Journal of >New Scheme of Hyperboloid Microlens for High-Average and High-Yield Coupling High-Power Lasers to Single-Mode Fibers
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New Scheme of Hyperboloid Microlens for High-Average and High-Yield Coupling High-Power Lasers to Single-Mode Fibers

机译:高倍率高产高功率激光器与单模光纤双曲面微透镜的新方案

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摘要

A new scheme of hyperboloid microlens (HM) employing automatic grinding and precise fusing techniques to achieve high-average and high-yield coupling efficiency from high-power 980-nm lasers into single mode fibers is proposed and demonstrated. The fiber endface of the HM exhibited a double-variable curvature in the major and minor axes that was characterized as a hyperboloid. By selecting half transverse length of the hyperbola and using fusing process to precise and quantitative controlling the required minor radius of curvature within 2.4–2.8 $mu$ m and offset within 0.8 $mu$ m, the HMs exhibited a high-average coupling efficiency of 83%. For fabricated high-coupling HMs, the result was also found that the tolerance of minor radius of curvature decreased as the offset increased. This study demonstrates that the proposed HMs through both automatic grinding and precise fusing techniques can achieve high-average and high-yield coupling efficiency better than any other grinding techniques to form asymmetric microlenses for utilizing in many low-cost lightwave interconnection applications.
机译:提出并演示了一种采用自动研磨和精确熔合技术实现从高功率980 nm激光器到单模光纤的高平均和高良率耦合效率的双曲面微透镜(HM)新方案。 HM的纤维端面在长轴和短轴上显示双变量曲率,其特征是双曲面。通过选择双曲线的一半横向长度,并使用熔合工艺精确和定量地控制所需的较小曲率半径在2.4-2.8μm之间,偏移在0.8μm以内,HMs表现出高的平均耦合效率。 83%。对于制造的高耦合HM,还发现随着偏移量的增加,较小曲率半径的容差也会减小。这项研究表明,通过自动研磨和精确熔合技术提出的HM可以比形成任何非对称微透镜的任何其他研磨技术更好地实现高平均和高良率耦合效率,从而可用于许多低成本的光波互连应用中。

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