Total light absorption in plasmonic nanostructures

被引:18
|
作者
Teperik, T. V.
Popov, V. V.
Garcia de Abajo, F. J.
机构
[1] Russian Acad Sci, Inst Radio Engn & Elect, Saratov Div, Saratov 410019, Russia
[2] CSIC, Inst Opt, E-28006 Madrid, Spain
[3] Donostia Int Phys Ctr, E-20080 San Sebastian, Spain
来源
JOURNAL OF OPTICS A-PURE AND APPLIED OPTICS | 2007年 / 9卷 / 09期
关键词
plasmonic nanostructures; nanovoids; nanospheres; total absorption;
D O I
10.1088/1464-4258/9/9/S29
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present a simple physical model describing the optical properties of periodic planar metallic nanostructures in terms of equivalent oscillating-current resonant circuits, which explain the total light absorption phenomenon in different plasmonic nanostructures on a common physical ground by referring it to the impedance matching condition at the plasmon resonance. This model can be easily adapted to describe different resonant nanostructures exhibiting total absorption of light at plasmon resonances.
引用
收藏
页码:S458 / S462
页数:5
相关论文
共 50 条
  • [41] Tunable Plasmonic Properties and Absorption Enhancement in Terahertz Photoconductive Antenna Based on Optimized Plasmonic Nanostructures
    Gric, Tatjana
    Gorodetsky, Andrei
    Trofimov, Aleksej
    Rafailov, Edik
    JOURNAL OF INFRARED MILLIMETER AND TERAHERTZ WAVES, 2018, 39 (10) : 1028 - 1038
  • [42] Plasmonic Nanostructures for Broadband Solar Absorption Based on Synergistic Effect of Multiple Absorption Mechanisms
    Su, Junli
    Liu, Dingquan
    Sun, Leihao
    Chen, Gang
    Ma, Chong
    Zhang, Qiuyu
    Li, Xingyu
    NANOMATERIALS, 2022, 12 (24)
  • [43] Enhancing light absorption in graphene with plasmonic lattices
    Pirruccio, G.
    Ramezani, M.
    Rivas, J. Gomez
    EPL, 2017, 119 (01)
  • [44] Tunable Plasmonic Properties and Absorption Enhancement in Terahertz Photoconductive Antenna Based on Optimized Plasmonic Nanostructures
    Tatjana Gric
    Andrei Gorodetsky
    Aleksej Trofimov
    Edik Rafailov
    Journal of Infrared, Millimeter, and Terahertz Waves, 2018, 39 : 1028 - 1038
  • [45] Plasmonic nanostructures for shrinking structured light to access forbidden transitions
    Sakai, Kyosuke
    Kitajima, Hiroki
    Sasaki, Keiji
    NANOPHOTONICS, 2022, 11 (11) : 2465 - 2472
  • [46] Light Emission from Plasmonic Nanostructures Enhanced with Fluorescent Nanodiamonds
    Zhao, Jingyi
    Cheng, Yuqing
    Shen, Hongming
    Hui, Yuen Yung
    Wen, Te
    Chang, Huan-Cheng
    Gong, Qihuang
    Lu, Guowei
    SCIENTIFIC REPORTS, 2018, 8
  • [47] Plasmonic Nanostructures for Enhanced Light Concentration Devoted to Photovoltaic Applications
    Marrocco, V.
    Grande, M.
    Marani, R.
    Calo, G.
    Petruzzelli, V.
    D'Orazio, A.
    Stomeo, T.
    De Vittorio, M.
    Passaseo, A.
    2010 12TH INTERNATIONAL CONFERENCE ON TRANSPARENT OPTICAL NETWORKS (ICTON), 2011,
  • [48] Light Emission from Plasmonic Nanostructures Enhanced with Fluorescent Nanodiamonds
    Zhao, Jingyi
    Cheng, Yuqing
    Shen, Hongming
    Hui, Yuen Yung
    Wen, Te
    Chang, Huan-Cheng
    Gong, Qihuang
    Lu, Guowei
    PLASMONICS III, 2018, 10824
  • [49] Beaming of light through depth-tuned plasmonic nanostructures
    Mote, Rakesh G.
    Zhou, Wei
    Fu, Yongqi
    OPTIK, 2010, 121 (21): : 1962 - 1965
  • [50] Light Emission from Plasmonic Nanostructures Enhanced with Fluorescent Nanodiamonds
    Jingyi Zhao
    Yuqing Cheng
    Hongming Shen
    Yuen Yung Hui
    Te Wen
    Huan-Cheng Chang
    Qihuang Gong
    Guowei Lu
    Scientific Reports, 8