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Design and realization of flexible very large mode area pixelated Bragg fibers

机译:柔性超大模面积像素化布拉格光纤的设计与实现

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摘要

A new Pixelated Bragg Fiber design showing improved optical performances in terms of single-mode behavior and effective area is presented. The cladding is made of 3 rings of cylindrical high refractive index rods (pixels) in which some pixels are removed to act as a modal sieve for an improved rejection of Higher Order Modes (HOMs). Two half-wave-stack conditions are used to increase the confinement losses of the 3 first HOMs: LP11 and LP02-LP21 guided core modes. The realized fiber exhibits a core diameter of 48.5 mu m with an effective single-mode behavior observed from 1000 nm to beyond 1700 nm even for a 1-m-long straight fiber. Losses prove to be low with a minimum value of 25 dB/km between 1200 and 1500 nm. Bending radius of 22.5 cm is reported for this structure without any significant extra-losses above a wavelength of 1350 nm. (C) 2015 Optical Society of America
机译:提出了一种新的像素化布拉格光纤设计,该设计在单模行为和有效面积方面显示出改进的光学性能。包层由3个圆柱状高折射率棒(像素)环组成,其中一些像素被移除以用作模态筛网,以改善对高阶模态(HOM)的抑制。使用两个半波堆叠条件来增加三个第一个HOM的限制损耗:LP11和LP02-LP21引导的核心模式。所实现的光纤的芯径为48.5μm,即使对于长度为1 m的直纤维,其从1000 nm观察到的有效单模行为也超过1700 nm。损耗极低,在1200至1500 nm之间的最小值为25 dB / km。据报道,该结构的弯曲半径为22.5 cm,在1350 nm波长以上没有任何明显的额外损耗。 (C)2015年美国眼镜学会

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