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Triangular-core large-mode-area photonic crystal fiber with low bending loss for high power applications

机译:具有低弯曲损耗的大功率应用的三角芯大模式区域光子晶体光纤

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摘要

A triangular-core large-mode-area photonic crystal fiber structure has been designed with lower bending loss. The design works on the principle of bend induced mode filtering. Effects of the design parameters have been numerically investigated using the full vectorial finite-element method. In order to improve the effective mode area of fundamental mode along with the differential bending loss, five down-doped material rods have been introduced in place of five air holes in cladding. The structure supports effective mode-area of fundamental mode as large as 794 μm~2 with nominal bend loss of 0.064 dB/m at bend radius of 15 cm. This structure is able to suppress all unwanted nonlinear effects and can be a potential candidate for designing compact high power delivery devices.
机译:设计了具有较低弯曲损耗的三角芯大模式面积光子晶体光纤结构。该设计基于弯曲感应模式滤波的原理。设计参数的影响已使用全矢量有限元方法进行了数值研究。为了改善基本模的有效模面积以及不同的弯曲损耗,已经引入了五个向下掺杂的材料棒来代替包层中的五个气孔。该结构支持基本模式的有效模式区域,最大有效模式区域为794μm〜2,在15 cm弯曲半径处的标称弯曲损耗为0.064 dB / m。这种结构能够抑制所有有害的非线性影响,并且可以成为设计紧凑型高功率传输设备的潜在候选者。

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