Titanium resonators based ultra-broadband perfect light absorber

被引:91
|
作者
Liu, Zhengqi [1 ]
Liu, Guiqiang [1 ]
Liu, Xiaoshan [1 ]
Wang, Yan [1 ]
Fu, Guolan [1 ]
机构
[1] Jiangxi Normal Univ, Coll Phys & Commun & Elect, Jiangxi Key Lab Nanomat & Sensors, Prov Key Lab Oproelect & Telecommun, Nanchang 330022, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
Perfect absorber; Resonators; Plasmonic; DUAL-BAND; NITRIDE; PLASMON; ABSORPTION;
D O I
10.1016/j.optmat.2018.06.008
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We propose a new approach for achieving ultra-broadband perfect absorber by using titanium (Ti) resonators. Near-unity absorption with a high average absorptivity of 91.4% is achieved through the whole spectral range from 0.4 mu m to 2 mu m for the double-period lattice of Ti resonators array on the top of a silica layer coated on the opaque Ti substrate. In contrast to the common metal-insulator-metal (MIM) absorbers only with tens of nanometers absorption bandwidth, the Ti based ultra-broadband perfect absorber (T-UPA) can show a perfect absorption window (i.e., the absorptivity exceeding 90%) with the spectral bandwidth over 1007 nm from visible to near-infrared region (i.e., from 0.485 mu m to 1.492 mu m). The cooperative effects of the propagating surface plasmons and the corresponding localized plasmonic resonances of Ti resonators contribute to the broadband absorption response. Moreover, the ultra-broadband perfect absorption is polarization-independent and angle insensitive, which hold the proposed T-UPA with strong practicality and high tolerance in the complex electromagnetic environment (ie. sun radiation). Furthermore, the absorption window for this T-UPA can be greatly broadened via using a thin anti-reflection coating film, which shows a perfect absorption with the bandwidth of 1555 nm in the visible and near-infrared range. The numerically demonstrated thin-film absorber configuration facilitates the scalability to optoelectronics applications such as thermal photovoltaics and hot-electron devices.
引用
收藏
页码:118 / 123
页数:6
相关论文
共 50 条
  • [21] All Ceramic-Based Metal-Free Ultra-broadband Perfect Absorber
    Soydan, Mahmut Can
    Ghobadi, Amir
    Yildirim, Deniz Umut
    Erturk, Vakur Behcet
    Ozbay, Ekmel
    PLASMONICS, 2019, 14 (06) : 1801 - 1815
  • [22] An ultra-broadband THz absorber based on graphene
    Wang, Lei
    Jiang, Yannan
    Wang, Jiao
    Cao, Weiping
    Gao, Xi
    Yu, Xinhua
    Zhang, Huaide
    PROCEEDINGS OF THE 2016 11TH INTERNATIONAL SYMPOSIUM ON ANTENNAS, PROPAGATION AND EM THEORY (ISAPE), 2016, : 699 - 702
  • [23] Ultra-Broadband Perfect Absorber Based on Multilayered Zr/SiO2 Film
    Wu Tiesheng
    Wang Xueyu
    Zhang Huixian
    Wang Yiying
    Cao Weiping
    Wang Yiping
    ACTA OPTICA SINICA, 2021, 41 (05)
  • [24] Ultra-Broadband Absorber Based on Plasma Metamaterials
    Yang Jing
    Zhang Haifeng
    Zhang Hao
    Liu Jiaxuan
    LASER & OPTOELECTRONICS PROGRESS, 2018, 55 (09)
  • [25] Ultra-broadband absorber based on multilayered graphene
    Garakani, Farshid Gharib
    Moradi, Gholamreza
    Ghorbani, Ayaz
    OPTICS CONTINUUM, 2023, 2 (05): : 1158 - 1165
  • [26] Ultra-broadband near-perfect metamaterial absorber for photovoltaic applications
    Nakti, Partha Pratim
    Sarker, Dip
    Tahmid, Md Ishfak
    Zubair, Ahmed
    NANOSCALE ADVANCES, 2023, 5 (24): : 6858 - 6869
  • [27] An ultra-broadband polarization-independent perfect absorber for the solar spectrum
    He, Xunjun
    Yan, Shitao
    Lu, Guangjun
    Zhang, Qinfei
    Wu, Fengmin
    Jiang, Jiuxing
    RSC ADVANCES, 2015, 5 (76) : 61955 - 61959
  • [28] Ultra-broadband Tungsten Absorber
    Rana, Ahsan Sarwar
    Mehmood, Muhammad Qasim
    Jeong, Heongyeong
    Kim, Inki
    Rho, Junsuk
    2018 PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM (PIERS-TOYAMA), 2018, : 297 - 300
  • [29] Temperature insensitive ultra-broadband THz metamaterial absorber based on metal square ring resonators
    Zhou, Yishan
    Xia, Hui
    Zhang, Luomeng
    Zhao, Yuefeng
    Xie, Wenke
    RESULTS IN PHYSICS, 2021, 22
  • [30] Cross-Shaped Titanium Resonators Based Metasurface for Ultra-Broadband Solar Absorption
    Zhou, Jin
    Liu, Xiaoshan
    Zhang, Houjiao
    Liu, Mulin
    Yi, Qing
    Liu, Zhengqi
    Wang, Junqiao
    IEEE PHOTONICS JOURNAL, 2021, 13 (01):