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Optical Spectra Tuning of All-Glass Photonic Bandgap Fiber Infiltrated with Silver Fast-Ion-Conducting Glasses

机译:银快导玻璃渗透的全玻璃光子带隙光纤的光谱调谐

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摘要

Silver iodide metaphosphate glasses of the xAgI + (1−x)AgPO3 family are embedded inside the air capillaries of a commercial silica photonic crystal fiber (PCF) by means of vacuum-assisted infiltration technique. In this paper, we report on tuning the photonic bandgap (PBG) guidance characteristics of the fabricated all-glass photonic bandgap fibers, by varying the composition of the fast-ion-conducting phosphate glass infiltration medium. Doping AgPO3 metaphosphate glass with AgI significantly alters the PBG guidance patterns in the examined range between 350 and 1750 nm, as it leads to the introduction of numerous additional transmission stop-bands, while affecting scattering dependant losses. The effect of phosphate glass cooling method during sample fabrication on the transmission behavior of the xAgI + (1−x)AgPO3/PCFs is also considered.
机译:通过真空辅助渗透技术,将xAgI +(1-x)AgPO3家族的碘化银偏磷酸盐玻璃嵌入到商用二氧化硅光子晶体光纤(PCF)的空气毛细管中。在本文中,我们报告了通过改变快速离子传导磷酸盐玻璃渗透介质的成分来调整所制造的全玻璃光子带隙光纤的光子带隙(PBG)引导特性。用AgI掺杂AgPO3偏磷酸盐玻璃会显着改变PBG在350至1750 nm范围内的引导模式,因为这会导致引入许多附加的传输阻带,同时影响与散射有关的损耗。还考虑了样品制备过程中磷酸盐玻璃冷却方法对xAgI +(1-x)AgPO3 / PCFs传输行为的影响。

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