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All-optical control of localized plasmonic resonance realized by photoalignment of liquid crystals

机译:通过液晶的光取向实现对局部等离子体共振的全光控制

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Large shifts in the plasmonic resonances of a thin film of gold nanorods (GNRs) are induced through the modulation of the local refractive index of the neighboring dielectric medium. This change is enabled through light-induced surface reorientation of a nematic liquid crystal in contact with a nanometer-thin photoalignment layer coating the GNR film. The presence of isolated and well distributed GNRs, both before and after the photoalignment layer deposition, is shown through atomic force and scanning electron microscopy. Exposure of the photoalignment layer to polarized light is shown to reorient aligned nematic liquid crystal molecules to an orthogonal direction, thereby changing the local refractive index of the medium in close proximity to the GNR film. This large change in the local dielectric strength is shown to cause a broad red shift of the localized plasmonic longitudinal resonance and almost no shift in the local transverse resonance. The ability to remotely and quickly change the plasmonic properties of this GNR system marks a breakthrough towards the realization of all-optical plasmonic and photonic devices such as plasmonic colour filters.
机译:金纳米棒(GNRs)薄膜的等离子体共振的大位移是通过调制相邻介电介质的局部折射率引起的。这种变化是通过向列型液晶的光诱导表面重新取向而实现的,该向列型液晶与涂覆GNR膜的纳米级光取向膜接触。通过原子力和扫描电子显微镜观察,在光取向膜沉积之前和之后,存在分离且分布均匀的GNR。示出光取向层暴露于偏振光以使取向的向列型液晶分子重新取向为正交方向,从而改变紧邻GNR膜的介质的局部折射率。局部介电强度的这种大变化显示出引起局部等离子体纵向共振的宽泛红移,而局部横向共振几乎没有移。能够远程快速更改此GNR系统的等离子特性的能力,标志着朝着实现等离子彩色滤光片等全光学等离子和光子设备的突破。

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