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Efficient Bragg gratings in phosphosilicate and germanosilicate photonic crystal fiber

机译:磷硅酸盐和锗硅酸盐光子晶体光纤中的高效布拉格光栅

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摘要

We present ArF laser-induced dynamics of Bragg grating (BG) growths in phosphosilicate-doped or germanosilicate-doped core photonic crystal fibers (PCFs). To this end, we have adapted the technique of H_(2) loading, usually used in conventional fiber, to the case of microstructured fiber, allowing both the concentration of hydrogen in the PCFs to be kept nearly constant for the time of the exposure and the BG spectra to be easily recorded. We compared the characteristics of BG growths in the two types of PCF to those in conventional step-index fibers. We then conducted a study of the thermal stability of the BGs in PCFs through 30 min of isochronal annealing. At the same time we discuss the role played by the microstructuration and the doping with regard to the grating contrast and the Bragg wavelength stability.
机译:我们介绍了在掺磷硅酸盐或掺锗硅酸盐的核心光子晶体光纤(PCFs)中ArF激光诱导的布拉格光栅(BG)生长的动力学。为此,我们已经将通常用于常规光纤的H_(2)加载技术调整为适用于微结构光纤的技术,从而使PCF中的氢浓度在暴露时保持几乎恒定不变, BG光谱易于记录。我们将两种PCF中BG的生长特征与常规阶跃折射率纤维中的BG生长特征进行了比较。然后,我们通过等时退火30分钟,对PCF中BG的热稳定性进行了研究。同时,我们讨论了微结构和掺杂在光栅对比度和布拉格波长稳定性方面的作用。

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