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Switchable Photonic Nanojet by Electro-Switching Nematic Liquid Crystals

机译:电开关向列液晶的可切换光子纳米射流

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摘要

This paper first presents a switchable photonic nanojet (PNJ) generated by a polystyrene (PS) microsphere immersed in nematic liquid crystals (NLCs). The PNJ is switched by applying external voltage, which originates from the refractive index change in the surrounding medium caused by the field-induced realignment of liquid crystal molecules. By tuning the refractive index of NLCs larger or smaller than that of the PS microsphere, the PNJ can be switched off or on. Moreover, we present an optimization study to seek a better electric energy focusing property of the PNJ. Our results reveal that the switchability of PNJ can be optimized by applying a shorter incident wavelength, a double-layer microsphere, and a PS ellipsoid. The full width at half-maximum (FWHM) generated by the PS ellipsoid is narrower than that generated by the microsphere with a shorter incident wavelength. The intensity contrast of the PS ellipsoid is higher than that of the double-layer microsphere. As a whole, the switchability of PNJ can be best optimized by a PS ellipsoid. This should open the way for the development of integrated photonic devices.
机译:本文首先提出了一种可切换的光子纳米射流(PNJ),它是由浸入向列液晶(NLC)中的聚苯乙烯(PS)微球产生的。 PNJ通过施加外部电压进行切换,该外部电压源于由电场诱导的液晶分子重新排列引起的周围介质的折射率变化。通过调节大于或小于PS微球的NLC的折射率,可以关闭或打开PNJ。此外,我们提出了一项优化研究,以寻求更好的PNJ电能聚焦特性。我们的结果表明,可以通过应用较短的入射波长,双层微球体和PS椭球体来优化PNJ的可切换性。 PS椭球所产生的半峰全宽(FWHM)比入射波长较短的微球所产生的半峰全宽窄。 PS椭球的强度对比度高于双层微球的强度对比度。总体而言,可以通过PS椭球体来最佳地优化PNJ的可切换性。这应该为集成光子器件的开发开辟道路。

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