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Tailoring enhanced chiroptical effect with Fabry–Perot cavity-coupled sandwich chiral metamaterials

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【作者】 阳泽健高福华侯宜栋胡德骄庞霖吴轩楠

【Author】 Zejian Yang;Fuhua Gao;Yidong Hou;Dejiao Hu;Lin Pang;Xuannan Wu;School of Physical Science and Technology, Sichuan University;Key Laboratory for High Energy Density Physics and Technology Ministry of Education,Sichuan University;

【机构】 School of Physical Science and Technology, Sichuan UniversityKey Laboratory for High Energy Density Physics and Technology Ministry of Education,Sichuan University

【摘要】 Cavity-coupled plasmonic structure is demonstrated to be a simple and effective tool to manipulatelight,enhance the biosensing figure of merit, and control the polarization state. In this Letter, we demonstrate the tunability of the chiroptical effect of cavity-coupled chiral structure, i.e., sandwich chiral metamaterials(SCMs), in whichradiation coupling dominates the interaction between particles. Two types of SCMs whose building blocks are 3D chiral and 2D chiral, respectively, are numerically studied. Distinct responses are observed in these two materials. The chiroptical effect can be effectively manipulated and enhanced in the 2D case, while the SCMs consisting of 3D chiral layers keep the chiroptical effecta constant. A theoretical analysis based on matrix optics is developed to explain the corresponding phenomena, which gives a reasonable agreement with numerical simulations.

【Abstract】 Cavity-coupled plasmonic structure is demonstrated to be a simple and effective tool to manipulatelight,enhance the biosensing figure of merit, and control the polarization state. In this Letter, we demonstrate the tunability of the chiroptical effect of cavity-coupled chiral structure, i.e., sandwich chiral metamaterials(SCMs), in whichradiation coupling dominates the interaction between particles. Two types of SCMs whose building blocks are 3D chiral and 2D chiral, respectively, are numerically studied. Distinct responses are observed in these two materials. The chiroptical effect can be effectively manipulated and enhanced in the 2D case, while the SCMs consisting of 3D chiral layers keep the chiroptical effecta constant. A theoretical analysis based on matrix optics is developed to explain the corresponding phenomena, which gives a reasonable agreement with numerical simulations.

【关键词】 chiralsandwichfigureopticsnumericallyblocksfittingperiodicallyspacingdiagonal
【基金】 supported by the National Natural Science Foundation of China under Grant No.61377054
  • 【文献出处】 Chinese Optics Letters ,中国光学快报(英文版) , 编辑部邮箱 ,2016年06期
  • 【分类号】TB39
  • 【被引频次】1
  • 【下载频次】18
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