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首页> 外文期刊>Photonics Technology Letters, IEEE >Mode Matching and Coupling of Lensed and Cleaved Fibers Employing Near-Field Technique
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Mode Matching and Coupling of Lensed and Cleaved Fibers Employing Near-Field Technique

机译:采用近场技术的透镜和切割光纤的模式匹配和耦合

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摘要

An experimental coupling mechanism is presented that demonstrates efficient coupling between a high-power 980-nm laser diode and a lensed fiber by employing mode (spot size and wavefront) matching in the near-field regime. The results show that the beam spot pattern of the lensed fiber of a horizontally elliptical shape is spot-size matched to the laser. The wavefront of the lensed fiber with a minor radius of curvature ranging from −9 to exhibits a curve wave that is also phase matched to the laser. This indicates that the similarity in the mode patterns of both the spot size and the wavefront between lensed fiber and laser is responsible for mode-matched beam coupling, leading to a coupling efficiency of more than 80%. In contrast to the lensed fiber, the spot-size of the cleaved fiber is round, and the wavefront is a plane wave. The different mode distributions between the laser and the cleaved fiber lead to a mode mismatch, resulting in a coupling efficiency of lower than 40%. This experimental coupling mechanism investigation in the near-field regime provides useful information for practical micro-optic design with better mode matching to achieve efficient coupling from active to passive components for interconnect applications.
机译:提出了一种实验性耦合机制,该机制通过在近场状态下采用模式(光点大小和波前)匹配,证明了高功率980 nm激光二极管与透镜光纤之间的有效耦合。结果表明,水平椭圆形的透镜光纤的束斑图案与激光的斑尺寸匹配。透镜光纤的波前具有较小的曲率半径,范围为-9至,其弯曲波也与激光器相位匹配。这表明光斑尺寸和透镜光纤与激光之间的波前在模式模式上的相似性是模式匹配光束耦合的原因,耦合效率超过80%。与透镜光纤相反,分裂光纤的光斑尺寸为圆形,波前为平面波。激光器和切割光纤之间的模式分布不同会导致模式失配,从而导致耦合效率低于40%。这种在近场状态下的实验性耦合机制研究为实用的微光学设计提供了有用的信息,具有更好的模式匹配,可以实现互连应用中有源组件到无源组件的有效耦合。

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