Asymmetrically engineered metallic nanodisk clusters for plasmonic Fano resonance generation

被引:23
|
作者
Truong Khang Nguyen [1 ,2 ]
Truong Duy Le [3 ]
Phuc Toan Dang [1 ,2 ]
Le, Khai Q. [1 ,2 ]
机构
[1] Ton Duc Thang Univ, Inst Comp Sci, Div Comp Phys, Ho Chi Minh City, Vietnam
[2] Ton Duc Thang Univ, Fac Elect & Elect Engn, Ho Chi Minh City, Vietnam
[3] Hoa Sen Univ, Fac Sci & Technol, Ho Chi Minh City, Vietnam
关键词
ION-IMPLANTATION; NANOPARTICLES; MODES; NANOSTRUCTURES; METAMATERIALS; ENHANCEMENT; ARRAYS;
D O I
10.1364/JOSAB.34.000668
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In this paper, we numerically introduce a planar metamolecule that generates plasmonic Fano resonance. The engineered molecule consists of closely packed asymmetric gold nanodisks deposited on a glass substrate operating at visible and near-infrared wavelengths. The asymmetric arrangement of nanodisks plays a key role in Fano resonance generation. The induced extinction cross-section spectroscopy has a Fano-like shape owing to interference between bright and dark plasmonic modes sustained by the asymmetric nanodisk clusters. The Fano dips are shown to be highly sensitive to the interdisk gaps as well as to the surrounding environment. As a result, we introduce a potential refractive index nanosensor having a sensitivity of 660 nm/RIU and a figure of merit of 4.75. The proposed metamolecule holds potential for various applications, such as Fano-induced enhancement of solar energy harvesting, molecular fluorescence, and photo upconversion. (C) 2017 Optical Society of America
引用
收藏
页码:668 / 672
页数:5
相关论文
共 50 条
  • [21] Optical Fano Resonance in Self-Assembled Magnetic-Plasmonic Nanostructures
    Liu, Kai
    Xue, Xiaozheng
    Sukhotskiy, Viktor
    Furlani, Edward P.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2016, 120 (48) : 27555 - 27561
  • [22] Nanodisk-Induced Modification of Plasmon Coupling and Appearance of Fano Resonance Without Symmetry Breaking in Concentric Ag Nanoring-Nanodisk
    Yi, Zao
    Niu, Gao
    Ye, Xin
    Luo, Jiangshan
    Li, Xibo
    Jiang, Xiaodong
    Huang, Jin
    Yi, Yong
    Duan, Tao
    Zhang, Jicheng
    Tang, Yongjian
    PLASMONICS, 2017, 12 (03) : 889 - 898
  • [23] Pronounced Fano Resonance in Single Gold Split Nanodisks with 15 nm Split Gaps for Intensive Second Harmonic Generation
    Zhang, Shi
    Li, Guan-Can
    Chen, Yiqin
    Zhu, Xupeng
    Liu, Shao-Ding
    Lei, Dang Yuan
    Duan, Huigao
    ACS NANO, 2016, 10 (12) : 11105 - 11114
  • [24] Fano resonances in capped metallic nanostructures for highly sensitive plasmonic sensors
    Lee, Kuang-Li
    Wei, Pei-Kuen
    ADVANCED ENVIRONMENTAL, CHEMICAL, AND BIOLOGICAL SENSING TECHNOLOGIES XIV, 2017, 10215
  • [25] Tunable Fano Resonance in Rod-Ring Plasmonic Nanocavities
    Yang, Da-Jie
    Yang, Zhong-Jian
    Li, Ying-Ying
    Zhou, Li
    Hao, Zhong-Hua
    Wang, Qu-Quan
    PLASMONICS, 2015, 10 (02) : 263 - 269
  • [26] Two-Way Fano Resonance Switch in Plasmonic Metamaterials
    Zhou, Yong Jin
    Dai, Li Hui
    Li, Qiao Yu
    Xiao, Zhong Yin
    FRONTIERS IN PHYSICS, 2020, 8
  • [27] Dynamic Tuning and Symmetry Lowering of Fano Resonance in Plasmonic Nanostructure
    Cui, Yonghao
    Zhou, Jianhong
    Tamma, Venkata A.
    Park, Wounjhang
    ACS NANO, 2012, 6 (03) : 2385 - 2393
  • [28] Modulation of plasmonic Fano resonance by the shape of the nanoparticles in ordered arrays
    Lisunova, Milana
    Norman, Justin
    Blake, Philip
    Forcherio, Gregory T.
    DeJarnette, Drew F.
    Roper, D. Keith
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2013, 46 (48)
  • [29] Digital coding Fano resonance based on active plasmonic metamaterials
    Xu, Jian
    Li, Qiao Yu
    Dai, Li Hui
    Zhou, Yong Jin
    APPLIED OPTICS, 2023, 62 (14) : 3581 - 3588
  • [30] Enhanced Magnetic and Electric Fields via Fano Resonances in Metasurfaces of Circular Clusters of Plasmonic Nanoparticles
    Campione, Salvatore
    Guclu, Caner
    Ragan, Regina
    Capolino, Filippo
    ACS PHOTONICS, 2014, 1 (03): : 254 - 260