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Mode Transforming Properties of Tapered Single-Mode Fiber Microlenses

机译:锥形单模光纤微透镜的模转换特性

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摘要

The Gaussian approximation that is typically used to estimate single-mode fiber microlens performance is investigated. It is applied to hemispheric lenses on two types of tapered single-mode fiber. Theoretical and experimental results are compared. The first type of taper, which is fabricated by pulling a fiber while it is melted, has a tapered core and a tapered cladding. The second type of taper, which is fabricated by etching the cladding, has a tapered cladding only. For a tapered-core fiber, coupling to the cladding-guided modes and the finite radius of curvature of the wave front before the lens must be considered to predict the lens spot size accurately, whereas the spot size of a tapered-cladding lens can be predicted from the lens diameter alone. Thus the spot size of a lens on a tapered-cladding fiber is easier to predict and control than that of a lens on a tapered-core fiber. It is also shown that the usual theory used to predict the spot size gives accepted values for tapered-cladding lenses but not for tapered-core lenses.
机译:研究了通常用于估计单模光纤微透镜性能的高斯近似。它适用于两种类型的锥形单模光纤上的半球透镜。比较了理论和实验结果。第一种类型的锥度是通过在纤维熔化时拉动纤维而制成的,它具有锥形芯和锥形包层。通过蚀刻覆层制造的第二种锥度仅具有锥形覆层。对于锥形芯光纤,必须考虑耦合到包层引导模和透镜前波阵面的有限曲率半径,以准确预测透镜光斑尺寸,而锥包层透镜的光斑尺寸可以是仅从镜片直径即可预测。因此,锥形包层光纤上的透镜的光斑尺寸比锥形芯光纤上的透镜的光斑尺寸更容易预测和控制。还表明,用于预测光斑尺寸的常用理论给出了锥形包层透镜的可接受值,而不是锥形芯透镜的可接受值。

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