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手性超材料吸收体和热释电测辐射热仪中的等离子体共振诱导光热圆二色性。

Photothermal Circular Dichroism Induced by Plasmon Resonances in Chiral Metamaterial Absorbers and Bolometers.

机构信息

Institute of Fundamental and Frontier Sciences , University of Electronic Science and Technology of China , Chengdu 610054 , China.

Department of Physics and Astronomy , Ohio University , Athens , Ohio 45701 , United States.

出版信息

Nano Lett. 2018 Mar 14;18(3):2001-2008. doi: 10.1021/acs.nanolett.7b05446. Epub 2018 Feb 14.

Abstract

Chiral photochemistry remains a challenge because of the very small asymmetry in the chiro-optical absorption of molecular species. However, we think that the rapidly developing fields of plasmonic chirality and plasmon-induced circular dichroism demonstrate very strong chiro-optical effects and have the potential to facilitate the development of chiral photochemistry and other related applications such as chiral separation and sensing. In this study, we propose a new type of chiral spectroscopy-photothermal circular dichroism. It is already known that the planar plasmonic superabsorbers can be designed to exhibit giant circular dichroism signals in the reflection. Therefore, upon illumination with chiral light, such planar metastructures should be able to generate a prominent asymmetry in their local temperatures. Indeed, we demonstrate this chiral photothermal effect using a chiral plasmonic absorber. Calculated temperature maps show very strong photothermal circular dichroism. One of the structures computed in this Letter could serve as a chiral bolometer sensitive to circularly polarized light. Overall, this chiro-optical effect in plasmonic metamaterials is much greater than the equivalent effect in any chiral molecular system or plasmonic bioassembly. Potential applications of this effect are in polarization-sensitive surface photochemistry and chiral bolometers.

摘要

手性光化学仍然是一个挑战,因为分子物种的手-光吸收的不对称性非常小。然而,我们认为,迅速发展的等离子体手性和等离子体诱导圆二色性领域展示了非常强的手性光学效应,并有可能促进手性光化学和其他相关应用的发展,如手性分离和传感。在本研究中,我们提出了一种新型的手性光谱学——光热圆二色性。已知平面等离激元超吸收体可以被设计成在反射中表现出巨大的圆二色性信号。因此,用手性光照射时,这种平面亚结构应该能够在其局部温度上产生显著的不对称性。事实上,我们使用手性等离激元吸收体证明了这种手性光热效应。计算的温度图显示出非常强的光热圆二色性。本研究中计算的一个结构可以作为对圆偏振光敏感的手性测辐射热仪。总的来说,这种等离子体超材料中的手性光学效应比任何手性分子系统或等离子体生物组装中的等效效应都要大得多。这种效应的潜在应用在手性光化学和手性测辐射热仪中。

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