首页> 外文期刊>Liquid Crystals: An International Journal in the Field of Anisotropic Fluids >Temperature-controllable beam splitter and optical filter based on filling liquid crystal into both ends of photonic crystal fibres
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Temperature-controllable beam splitter and optical filter based on filling liquid crystal into both ends of photonic crystal fibres

机译:基于将液晶填充到光子晶体光纤两端的温控分束器和滤光器

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摘要

We first presented an optical device of integrated beam splitter and filter based on the photonic crystal fibres (PCFs) with both ends of the air-holes filled with liquid crystal (LCs). All of the airholes of one end of PCFs were filled with LCs and for the other end two air-holes near the solid core were selectively filled with LCs. As a beam splitter, when the two-filled-holes end was heated, the light power partly transmitted steadily from the central solid core into the two holes filled with LCs after the clearing point. As a filter, when the two-filled-holes end was heated, a peak near 760 nm of transmission spectrum got weak and another peak near 608 nm was maintained. While heating the full-filled end, the peak near 760 nm got strong and the peak near 608 nm got extremely weak. So this optical device could be applied to beam splitter and filter.
机译:我们首先介绍了一种基于光子晶体光纤(PCF)的集成分束器和滤光片的光学装置,其气孔的两端均填充有液晶(LC)。 PCF一端的所有气孔均填充有LC,而另一端的实心芯附近的两个气孔则选择性地填充了LC。作为分束器,当加热两个填充孔的末端时,光功率会从中心实心部分稳定地传输到清除点之后的两个填充有LC的孔中。作为过滤器,当加热两个填充孔的端部时,透射光谱的760nm附近的峰变弱,并且维持608nm附近的另一个峰。在加热充满的末端时,760 nm附近的峰变强,而608 nm附近的峰变弱。因此,该光学器件可应用于分束器和滤光片。

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