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Interaction Effects between Magnetic and Chiral Building Blocks: A New Route for Tunable Magneto-chiral Plasmonic Structures

机译:磁性和手性构件之间的相互作用效应:可调磁-手性等离子结构的新途径

摘要

© 2015 American Chemical Society. We propose a novel active magneto-chiral system consisting of a separated Au/Co multilayer with perpendicular magnetic anisotropy and plasmonic chiral oligomers. The electromagnetic interaction between the Au/Co multilayer and chiral building blocks, which is governed by their separation distance, plays a relevant role in the control of both magneto-optical and chiral activity, resulting in a strong effect on the chiro-optical response. Due to the interaction-induced detuning of the disk resonances in the oligomers, the chiro-optical activity decreases with increasing interaction strength. The possibility to tune both magneto- and chiro-optical properties of the system by controlling the interaction strength opens the door for the fabrication of magneto-chiral systems in a wide spectral range, which is determined by both constituting magnetic and chiral components, as well as their electromagnetic interaction.
机译:©2015美国化学学会。我们提出了一种新颖的主动磁手性系统,该系统由具有垂直磁各向异性和等离激子手性低聚物的分离的Au / Co多层组成。 Au / Co多层膜与手性结构单元之间的电磁相互作用(取决于它们的分离距离)在控制磁光和手性活动中起着重要的作用,从而对手性光学响应产生强大的影响。由于相互作用引起的低聚物盘共振的失谐,手性光学活性随相互作用强度的增加而降低。通过控制相互作用强度来调节系统的磁光和手性光学特性的可能性为在宽光谱范围内制造磁手性系统打开了大门,这也由构成磁性和手性成分共同决定作为它们的电磁相互作用。

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