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A frequency-addressed plasmonic switch based on dual-frequency liquid crystals

机译:基于双频液晶的寻址等离子体开关

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A frequency-addressed plasmonic switch was demonstrated by embedding a uniform gold nanodisk array into dual-frequency liquid crystals (DFLCs). The optical properties of the hybrid system were characterized by extinction spectra of localized surface plasmon resonances (LSPRs). The LSPR peak was tuned using a frequency-dependent electric field. A ∼4 nm blueshift was observed for frequencies below 15 kHz, and a 23 nm redshift was observed for frequencies above 15 kHz. The switching time for the system was ∼40 ms. This DFLC-based active plasmonic system demonstrates an excellent, reversible, frequency-dependent switching behavior and could be used in future integrated nanophotonic circuits.
机译:通过将均匀的金纳米盘阵列嵌入双频液晶(DFLC)中,演示了一种频率寻址的等离子体开关。通过局部表面等离振子共振(LSPR)的消光光谱来表征混合系统的光学特性。 LSPR峰使用频率相关的电场进行调谐。对于低于15 kHz的频率观察到约4 nm的蓝移,对于高于15 kHz的频率观察到23 nm的红移。系统的切换时间约为40 ms。这种基于DFLC的有源等离子体系统展示了出色的,可逆的,依赖于频率的开关特性,可用于未来的集成纳米光子电路。

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