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Infiltration liquid crystal in microstructured polymer optical fibers

机译:微结构聚合物光纤中的渗透液晶

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摘要

Here, we firstly demonstrate the photonic bandgap effect with PMMA mPOF by filling the air holes with liquid crystal, and subsequently change the light guidance mechanism from index guiding to bandgap guiding. The triangular structure PMMA mPOF used in the experiment is fabricated. A 60 cm length mPOF is butt-coupled to a conventional single mode fiber (SMF) with the broadband light from a supercontinuum source. It is clear to see the colour of the guided modes is red, since some wavelengths are attenuated by the material loss of PMMA in visible region. A positive dielectric anisotropy liquid crystal E7 is then infiltrated into about 6 cm of the length of mPOF by using capillary forces with the duration of 45 minutes. The transmission spectrum is measured by an optical spectrum analyzer with 1 nm resolution, and normalized to that of the unfilled fiber as shown by the solid line. The difference of spectra clearly reveals that, by filling the liquid crystal, some new bandgaps are formed in the wavelength range of 730 nm -780 nm, which is quite different with the material loss spectrum.
机译:在这里,我们首先通过用液晶填充气孔来证明PMMA mPOF的光子带隙效应,然后将导光机制从折射率导引改变为带隙导引。制作了实验中使用的三角结构PMMA mPOF。 60 cm长的mPOF通过超连续谱源的宽带光与传统的单模光纤(SMF)对接耦合。可以清楚地看到引导模式的颜色是红色,因为某些波长会因可见区域中PMMA的材料损耗而衰减。然后,通过使用毛细管力在45分钟的持续时间内将正介电各向异性液晶E7渗透到约6cm的mPOF长度中。透射光谱由具有1 nm分辨率的光谱分析仪测量,并按照实线所示归一化为未填充光纤的透射光谱。光谱的差异清楚地表明,通过填充液晶,在730 nm -780 nm的波长范围内形成了一些新的带隙,这与材料损耗光谱完全不同。

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