首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Inscription of strong Bragg gratings in pure silica photonic crystal fibers using UV femtosecond laser pulses
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Inscription of strong Bragg gratings in pure silica photonic crystal fibers using UV femtosecond laser pulses

机译:紫外飞秒激光脉冲在纯石英光子晶体光纤中刻写强布拉格光栅

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摘要

We demonstrate our experimental results on inscription of strong first-order Bragg gratings in hydrogen-free and hydrogen-loaded pure silica photonic crystal fibers (PCFs) using high-intensity 160 femtosecond (fs) UV laser pulses at 266 nm and a two-beam Talbot interferometer. Bragg reflectivities up to 37 dB for the H_2-loaded fiber as well as Bragg wavelength tuning over the telecom C-band using a single phase mask were achieved. The in-situ nonlinear filamentation of UV fs laser pulses, scattered by the fiber's micro-structured cladding, is demonstrated by direct refractive index profile measurement across the cross section of a written fiber. The results of thermal annealing measurements for a H_2-loaded PCF are also presented.
机译:我们使用266 nm的高强度160飞秒(fs)UV激光脉冲和两束光束在无氢和氢负载的纯二氧化硅光子晶体光纤(PCFs)中刻写强一阶布拉格光栅的实验结果进行了证明Talbot干涉仪。 H_2负载光纤的布拉格反射率高达37 dB,并且使用单相掩模实现了电信C波段的布拉格波长调谐。 UV fs激光脉冲的原位非线性丝状化,由光纤的微结构包层散射,通过在写入光纤的整个横截面上进行直接折射率分布测量得到了证明。还介绍了加载H_2的PCF的热退火测量结果。

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