Dynamic Tuning and Symmetry Lowering of Fano Resonance in Plasmonic Nanostructure

被引:114
|
作者
Cui, Yonghao [1 ]
Zhou, Jianhong [1 ]
Tamma, Venkata A. [1 ]
Park, Wounjhang [1 ]
机构
[1] Univ Colorado, Dept Elect Comp & Energy Engn, Boulder, CO 80309 USA
基金
美国国家科学基金会;
关键词
surface plasmon; Fano resonance; mechanical tuning; plasmonic nanostructure; localized surface plasmon resonance; anticrossing; METAMATERIALS; NANOCAVITIES; TUNABILITY; MOLECULES; BREAKING; CLUSTERS;
D O I
10.1021/nn204647b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We present dynamic tuning and symmetry lowering of Fano resonances in gold heptamers accomplished by applying uniaxial mechanical stress. The flexible heptamer structure was obtained by embedding the seven-gold-nanocylinder complex in a polydimethylsiloxane membrane. Under uniaxial stress, the Fano resonance exhibited opposite spectral shifts for the two orthogonal polarizations parallel and perpendicular to the mechanical stress. Furthermore, a new resonance was observed for polarization parallel to the mechanical stress but not for the perpendicular polarization. The experimental results showed good agreement with the numerical simulations. A detailed group theoretical analysis showed that the symmetry lowering caused by the mechanical stress not only splits the originally degenerate mode but also modifies the originally optically inactive mode into an optically active mode, which then interacts strongly with a closely spaced mode and exhibits anticrossing behavior. The symmetry tuning enabled by applying mechanical stress Is a simple and efficient way to engineer the nature of coupled plasmon resonances in complex nanostructures. The mechanically tunable plasmonic nanostructures also provide an excellent platform for dynamically tunable nanophotonic devices such as tunable filters and sensors.
引用
收藏
页码:2385 / 2393
页数:9
相关论文
共 50 条
  • [31] Tailoring the plasmonic Fano resonance in metallic photonic crystals
    Bauer, Christina
    Giessen, Harald
    NANOPHOTONICS, 2020, 9 (02) : 523 - 531
  • [32] Double Fano resonance in a plasmonic double grating structure
    Dana, Brenda
    Bahabad, Alon
    OPTICS EXPRESS, 2016, 24 (20): : 22334 - 22344
  • [33] Fano Resonance-Assisted Plasmonic Trapping of Nanoparticles
    Noor Uddin
    Guangqing Du
    Feng Chen
    Yu Lu
    Qing Yang
    Hao Bian
    Jiale Yong
    Xun Hou
    Plasmonics, 2017, 12 : 627 - 630
  • [34] Near Infrared Plasmonic Sensor based on Fano Resonance
    Sherif, S. M.
    Shahada, L.
    Zografopoulos, D. C.
    Beccherelli, R.
    Swillam, M.
    INTEGRATED OPTICS: DEVICES, MATERIALS, AND TECHNOLOGIES XX, 2016, 9750
  • [35] Mueller matrix spectroscopy of fano resonance in plasmonic oligomers
    Chandel, Shubham
    Singh, Ankit K.
    Agrawal, Aman
    Aneeth, K. A.
    Gupta, Angad
    Venugopal, Achanta
    Ghosh, Nirmalya
    OPTICS COMMUNICATIONS, 2019, 432 : 84 - 90
  • [36] Integrated plasmonic refractometric sensor using Fano resonance
    Sherif, S. M.
    Zografopoulos, D. C.
    Shahada, L. A.
    Beccherelli, R.
    Swillam, M.
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2017, 50 (05)
  • [37] Tunable Fano resonances and plasmonic hybridization of gold triangle–rod dimer nanostructure
    黄萌
    陈栋
    张利
    周骏
    Chinese Physics B, 2016, (05) : 309 - 315
  • [38] Electrical tuning of a quantum plasmonic resonance
    Liu, Xiaoge
    Kang, Hyung
    Yuan, Hongtao
    Park, Junghyun
    Kim, Soo Jin
    Cui, Yi
    Hwang, Harold Y.
    Brongersma, Mark L.
    NATURE NANOTECHNOLOGY, 2017, 12 (09) : 866 - +
  • [39] Plasmonic Fano Resonances in novel nanostructure consisting of two rings with different diameter
    Liu, Tongtong
    Shi, Yusen
    Xia, Feng
    Yun, Maojin
    PLASMONICS: DESIGN, MATERIALS, FABRICATION, CHARACTERIZATION, AND APPLICATIONS XV, 2017, 10346
  • [40] Magnetic Fano resonance of heterodimer nanostructure by azimuthally polarized excitation
    Zhang, Di
    Xiang, Jin
    Liu, Hongfeng
    Deng, Fu
    Liu, Haiying
    Ouyang, Min
    Fan, Haihua
    Dai, Qiaofeng
    OPTICS EXPRESS, 2017, 25 (22): : 26704 - 26713