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五重等离子体 Fano 共振与巨大的双曲圆二色性。

Five-fold plasmonic Fano resonances with giant bisignate circular dichroism.

机构信息

Institute of Physics, Beijing National Laboratory for Condensed Matter Physics, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Nanoscale. 2018 Sep 13;10(35):16630-16637. doi: 10.1039/c8nr05277h.

Abstract

Chiral metamaterials with versatile designs can exhibit orders of magnitude enhancement in chiroptical responses compared with that of the natural chiral media. Here, we propose an ease-of-fabrication three-dimensional (3D) chiral metamaterial consisting of vertical asymmetric plate-shape resonators along a planar air hole array with extraordinary optical transmission. It is theoretically shown that such chiral metamaterials simultaneously support five-fold plasmonic Fano resonance states and exhibit significant bisignate circular dichroism (CD) with amplitude as large as 0.8 due to the distinctive local electric field distributions. More interestingly, a "bridge" in the proposed double-plate-based architectures can act as a flipped ruler that is able to continuously manipulate optical chirality including the handedness-selective enhancement and the switching of CD signals. Importantly, the proposed designs have been readily fabricated by using a focused-ion-beam irradiation-induced folding technique and they consistently exhibited five-fold Fano resonances with strong CD effects in experiments. The studies are helpful for the understanding, designing and improvement of chiral optical systems towards potential applications such as ultrasensitive biosensing, polarimetric imaging, quantum information processing, etc.

摘要

手性超材料具有多种设计,与天然手性介质相比,在手旋光响应方面可实现数量级的增强。在这里,我们提出了一种易于制造的三维(3D)手性超材料,它由垂直不对称板形谐振器组成,沿平面空气孔阵列排列,具有非凡的光透射性能。理论表明,这种手性超材料同时支持五倍等离子体 Fano 共振态,并由于独特的局域电场分布而表现出显著的双信号圆二色性(CD),幅度高达 0.8。更有趣的是,所提出的基于双板的结构中的“桥”可以充当翻转尺,能够连续操纵光学手性,包括手性选择性增强和 CD 信号的切换。重要的是,所提出的设计已通过使用聚焦离子束辐照诱导折叠技术进行了易于制造,并且在实验中始终表现出五倍 Fano 共振和强 CD 效应。这些研究有助于对手性光学系统的理解、设计和改进,以实现潜在的应用,如超灵敏生物传感、偏振成像、量子信息处理等。

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