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Selective control of reconfigurable chiral plasmonic metamolecules

机译:选择性控制可重构手性等离子体元

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Selective configuration control of plasmonic nanostructures using either top-down or bottom-up approaches has remained challenging in the field of active plasmonics. We demonstrate the realization of DNA-assembled reconfigurable plasmonic metamolecules, which can respond to a wide range of pH changes in a programmable manner. This programmability allows for selective reconfiguration of different plasmonic metamolecule species coexisting in solution through simple pH tuning. This approach enables discrimination of chiral plasmonic quasi-enantiomers and arbitrary tuning of chiroptical effects with unprecedented degrees of freedom. Our work outlines a new blueprint for implementation of advanced active plasmonic systems, in which individual structural species can be programmed to perform multiple tasks and functions in response to independent external stimuli.
机译:使用自上而下或自下而上的方法对等离激元纳米结构的选择性配置控制在有源等离激元领域一直具有挑战性。我们证明了DNA组装的可重构等离激元大分子的实现,它可以以可编程的方式响应广泛的pH值变化。这种可编程性允许通过简单的pH调节选择性地重新配置溶液中共存的不同等离质子大分子物质。这种方法可以区分手性等离激元准对映体,并以前所未有的自由度任意调整手性效应。我们的工作概述了实施高级有源等离子体系统的新蓝图,其中可以对单个结构物种进行编程,以响应独立的外部刺激执行多种任务和功能。

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