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Spectral tuning of a locally bent microfiber taper interferometer with a nanosized liquid crystal overlay

机译:具有纳米级液晶覆盖层的局部弯曲微纤维锥度干涉仪的光谱调谐

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摘要

In this paper, the tuning characteristics of locally bent microfiber taper covered with a nanosized high-refractive-index liquid crystal (LC) layer under different temperatures and electric field intensities have been theoretically analyzed and experimentally investigated. A locally bent microfiber taper interferometer with a waist diameter of similar to 3.72 mu m is fabricated by using the flame brushing technique, followed by bending the transition region of the taper to form a modal interferometer and later by placing a similar to 200 nm LC layer over the uniform taper waist region. Experimental results indicate that a high-efficiency thermal or electric tuning of an LC-coated locally bent microfiber taper interferometer could be achieved. This suggests a potential application of this device as tunable all-fiber photonic devices, such as filters, modulators, and sensing elements. (C) 2016 Optical Society of America
机译:本文通过理论分析和实验研究了在不同温度和电场强度下覆盖有纳米级高折射率液晶(LC)层的局部弯曲微纤维锥度的调谐特性。通过使用火焰刷技术制造腰部直径近似为3.72μm的局部弯曲的微纤维锥度干涉仪,然后弯曲锥度的过渡区域以形成模态干涉仪,然后放置类似于200 nm的LC层在均匀的锥形腰部区域上。实验结果表明,可以实现LC涂层的局部弯曲微纤维锥度干涉仪的高效热调谐或电调谐。这表明该设备作为可调谐全光纤光子设备的潜在应用,例如滤波器,调制器和感应元件。 (C)2016美国眼镜学会

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