Near-field surface plasmons on quasicrystal metasurfaces

被引:0
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作者
Quanlong Yang
Xueqian Zhang
Shaoxian Li
Quan Xu
Ranjan Singh
Yongmin Liu
Yanfeng Li
Sergey S. Kruk
Jianqiang Gu
Jiaguang Han
Weili Zhang
机构
[1] Tianjin University and the Key Laboratory of Optoelectronics Information and Technology (Ministry of Education),Center for Terahertz waves and College of Precision Instrument and Optoelectronics Engineering
[2] Cooperative Innovation Center of Terahertz Science,Center for Disruptive Photonic Technologies
[3] Division of Physics and Applied Physics,Department of Mechanical and Industrial Engineering
[4] School of Physical and Mathematical Sciences,Nonlinear Physics Center and Center for Ultrahigh Bandwidth Devices for Optical Systems
[5] Nanyang Technological University,School of Electrical and Computer Engineering
[6] Northeastern University,undefined
[7] Research School of Physics and Engineering,undefined
[8] The Australian National University,undefined
[9] Oklahoma State University,undefined
来源
Scientific Reports | / 6卷
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摘要
Excitation and manipulation of surface plasmons (SPs) are essential in developing cutting-edge plasmonic devices for medical diagnostics, biochemical spectroscopy and communications. The most common approach involves designing an array of periodic slits or grating apertures that enables coupling of the incident light to the SP modes. In recent years, plasmonic resonances, including extraordinary optical transmission through periodic arrays, quasicrystals and random aperture arrays, have been investigated in the free space. However, most of the studies have been limited to the far field detection of the transmission resonance. Here, we perform near-field measurements of the SPs on quasicrystal metasurfaces. We discover that the reciprocal vector determines the propagation modes of the SPs in the quasicrystal lattice which can be well explained by the quasi-momentum conservation rule. Our findings demonstrate vast potential in developing plasmonic metasurfaces with unique device functionalities that are controlled by the propagation modes of the SPs in quasicrystals.
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