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一种具有偏振依赖响应的拉伸可调谐等离子体结构。

A stretch-tunable plasmonic structure with a polarization-dependent response.

作者信息

Zhu Xiaolong, Xiao Sanshui, Shi Lei, Liu Xiaohan, Zi Jian, Hansen Ole, Mortensen N Asger

机构信息

Department of Photonics Engineering, Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark.

出版信息

Opt Express. 2012 Feb 27;20(5):5237-42. doi: 10.1364/OE.20.005237.

Abstract

We experimentally demonstrate a stretchable plasmonic structure composed of a monolayer array of gold semishells with dielectric cores on an elastic PDMS substrate. The composite structure is fabricated using simple and inexpensive self-assembly and transfer-printing techniques, and it supports Bragg-type surface plasmon resonances whose frequencies are sensitive to the arrangement of the metallic semishells. Under uniaxial stretching, the lattice symmetry of this plasmonic structure can be reconfigured from hexagonal to monoclinic, leading to resonance frequency shifts from 200 THz to 191 THz for the TM polarization and from 200 THz to 198 THz for the TE polarization with a strain up to 20%, respectively. Compared with previously reported tunable plasmonic structures, the reconfiguration of lattice symmetry offers a promising approach to tune the surface plasmon resonance with a polarization-dependent response at the standard telecommunication band, and such tunable plasmonic structure might be exploited in realizing photonic devices such as sensors, switches and filters.

摘要

我们通过实验展示了一种可拉伸的等离子体结构,该结构由弹性聚二甲基硅氧烷(PDMS)衬底上带有介电芯的单层金半壳阵列组成。这种复合结构是使用简单且廉价的自组装和转移印刷技术制造的,并且它支持布拉格型表面等离子体共振,其频率对金属半壳的排列敏感。在单轴拉伸下,这种等离子体结构的晶格对称性可以从六边形重新配置为单斜晶系,对于TM极化,共振频率分别从200太赫兹(THz)偏移到191太赫兹,对于TE极化,共振频率在应变高达20%时从200太赫兹偏移到198太赫兹。与先前报道的可调谐等离子体结构相比,晶格对称性的重新配置为在标准电信频段以偏振依赖响应调谐表面等离子体共振提供了一种有前景的方法,并且这种可调谐等离子体结构可用于实现诸如传感器、开关和滤波器等光子器件。

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