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基于DNA折纸术组装的符合克尔条件的单向元发射器。

Unidirectional Meta-Emitters Based on the Kerker Condition Assembled by DNA Origami.

作者信息

Yeşilyurt Ayşe Tuğça Mina, Sanz-Paz Maria, Zhu Fangjia, Wu Xiaofei, Sunil Karthika Suma, Acuna Guillermo P, Huang Jer-Shing

机构信息

Leibniz Institute of Photonic Technology, Albert-Einstein-Straße 9, Jena 07745, Germany.

Department of Physics, University of Fribourg, Chemin du Musée 3, Fribourg CH 1700, Switzerland.

出版信息

ACS Nano. 2023 Oct 10;17(19):19189-19196. doi: 10.1021/acsnano.3c05649. Epub 2023 Sep 18.

Abstract

Optical quantum emitters near nanostructures have access to additional relaxation channels and thus exhibit structure-dependent emission properties, including quantum yield and emission directionality. A well-engineered quantum emitter-plasmonic nanostructure hybrid can be considered as an optical meta-emitter consisting of a transmitting nanoantenna driven by an optical-frequency generator. In this work, the DNA origami fabrication method is used to construct ultracompact unidirectional meta-emitters composed of a plasmonic trimer nanoantenna driven by a single dye molecule. The origami is designed to bring the dye to the gap to simultaneously excite the electric and magnetic dipole modes of the trimer nanoantenna. The interference of these modes fulfills the Kerker condition at the fluorophore's emission band, enabling unidirectional emission. We report unidirectional emission from a single molecule with a front-to-back ratio of up to 10.7 dB accompanied by a maximum emission enhancement of 23-fold.

摘要

纳米结构附近的光学量子发射器有额外的弛豫通道,因此表现出与结构相关的发射特性,包括量子产率和发射方向性。精心设计的量子发射器 - 等离子体纳米结构混合体可被视为一种光学元发射器,它由一个由光频发生器驱动的透射纳米天线组成。在这项工作中,DNA折纸制造方法被用于构建由单个染料分子驱动的等离子体三聚体纳米天线组成的超紧凑单向元发射器。该折纸被设计用于将染料带到间隙中,以同时激发三聚体纳米天线的电偶极子和磁偶极子模式。这些模式的干涉在荧光团的发射波段满足了克尔条件,实现了单向发射。我们报道了来自单个分子的单向发射,其前后比高达10.7 dB,同时最大发射增强了23倍。

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