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首页> 外文期刊>Lightwave Technology, Journal of >Dependence of Frequency Shift of Depolarized Guided Acoustic Wave Brillouin Scattering in Photonic Crystal Fibers
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Dependence of Frequency Shift of Depolarized Guided Acoustic Wave Brillouin Scattering in Photonic Crystal Fibers

机译:光子晶体光纤中去极化声波布里渊散射的频移依赖性

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摘要

We study through experiment, calculation and simulation the frequency dependence of depolarized GAWBS observed in four different photonic crystal fibers and extend the results to others through simulation. In two of the fibers studied, high frequency modes (>; 1 GHz) are observed in addition to the usual lower frequency torsional radial (TR) modes. The acoustic modes responsible for GAWBS are characterized through a combination of simulations and experiments. The calculations are done using the silica rod approximation, which is valid for PCFs with a low to intermediate air-fill fraction or with a very high air-filling fraction. Further simulations extend the range of photonic crystal fibers in which acoustic modes can be characterized. These are used to study the dependence of the acoustic mode frequency on key fiber parameters such as the ratio of air to silica across the whole cross section (κ) and the lattice pitch (Λ) .
机译:我们通过实验,计算和仿真研究了在四种不同光子晶体光纤中观察到的去极化GAWBS的频率依赖性,并通过仿真将结果扩展到其他方面。在研究的两种光纤中,除了通常的低频扭转径向(TR)模式外,还观察到了高频模式(>; 1 GHz)。通过模拟和实验相结合来表征负责GAWBS的声学模式。计算是使用硅胶棒近似值完成的,该方法适用于填充率低至中等或填充率非常高的PCF。进一步的仿真扩展了可以表征声模的光子晶体光纤的范围。这些用于研究声模频率对关键纤维参数的依赖性,例如整个横截面上的空气与二氧化硅之比(κ)和晶格间距(Λ)。

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