Topological valley plasmon transport in graphene bi-layer metasurfaces: applications to sensing nanodevices

被引:0
|
作者
Wang, Yupei [1 ]
Jian Wei You [1 ]
Lan, Zhihao [1 ]
Panoiu, Nicolae C. [1 ]
机构
[1] UCL, Dept Elect & Elect Engn, Torrington Pl, London WC1E 7JE, England
来源
METAMATERIALS XII | 2020年 / 11344卷
基金
欧洲研究理事会;
关键词
Topological photonics; valley-Hall; graphene; molecular sensor; GAS;
D O I
10.1117/12.2555724
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Topologically protected plasmonic states with wide topological band gaps provide unprecedented robustness against disorder-induced backscattering. In this study, we design a graphene bi-layer metasurface that possesses valley-Hall topological plasmonic modes in a nontrivial bandgap. In particular, the breaking of mirror symmetry of two graphene layers is achieved via a horizontal shift of the hole lattice of the top layer, which leads to topologically protected edge modes in the nontrivial bandgap. The corresponding band dispersion of the topological edge modes shows unidirectional propagation features. Moreover, we have designed a sensitive molecular sensor based on such graphene bi-layer metasurfaces, using the fact that the chemical potential of graphene varies upon adsorption of gas molecules. This effect leads to a marked variation of the transmission of the topological mode, and thus a sensing device with large sensitivity can be realized.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Topological valley transport at the curved boundary of a folded bilayer graphene
    Mania, E.
    Cadore, A. R.
    Taniguchi, T.
    Watanabe, K.
    Campos, L. C.
    COMMUNICATIONS PHYSICS, 2019, 2 (1)
  • [42] Gate-tunable topological valley transport in bilayer graphene
    Mengqiao Sui
    Guorui Chen
    Liguo Ma
    Wen-Yu Shan
    Dai Tian
    Kenji Watanabe
    Takashi Taniguchi
    Xiaofeng Jin
    Wang Yao
    Di Xiao
    Yuanbo Zhang
    Nature Physics, 2015, 11 : 1027 - 1031
  • [43] Modelling transport between a monolayer and a bi-layer polymeric package and food
    Laoubi, S
    Vergnaud, JM
    FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT, 1997, 14 (6-7): : 641 - 647
  • [44] Theoretical study on the transport in metal/organic bi-layer thin films
    Jiang, YM
    Xie, HB
    Guo, F
    Liu, P
    Li, J
    ACTA PHYSICA SINICA, 2005, 54 (12) : 5769 - 5773
  • [45] Controllable atmospheric pressure growth of mono-layer, bi-layer and tri-layer graphene
    Li, Jing
    Ji, Hengxing
    Zhang, Xing
    Wang, Xuanyun
    Jin, Zhi
    Wang, Dong
    Wan, Li-Jun
    CHEMICAL COMMUNICATIONS, 2014, 50 (75) : 11012 - 11015
  • [46] Electrical Properties of 30 nm Width Bi-Layer Interconnects of Multi Layer Graphene and Ni
    Ishikura, Taishi
    Isobayashi, Atsunobu
    Nishide, Daisuke
    Ito, Ban
    Saito, Tatsuro
    Matsumoto, Takashi
    Yamazaki, Yuichi
    Miyazaki, Hisao
    Watanabe, Masahito
    Sakuma, Naoshi
    Kajita, Akihiro
    Sakai, Tadashi
    2015 IEEE INTERNATIONAL INTERCONNECT TECHNOLOGY CONFERENCE AND 2015 IEEE MATERIALS FOR ADVANCED METALLIZATION CONFERENCE (IITC/MAM), 2015, : 321 - 323
  • [47] Synergistic effect of temperature and point defect on the mechanical properties of single layer and bi-layer graphene
    Debroy, Sanghamitra
    Kumar, V. Pavan
    Sekhar, K. Vijaya
    Acharyya, Swati Ghosh
    Acharyya, Amit
    SUPERLATTICES AND MICROSTRUCTURES, 2017, 110 : 205 - 214
  • [48] SMC/TPE bi-layer configurations for structural vibration damping applications
    Burgoa, Aizeti
    Lekube, Blanca
    Zulueta, Kepa
    JOURNAL OF APPLIED POLYMER SCIENCE, 2022, 139 (10)
  • [49] Monte Carlo study of the magnetic properties of a bi-layer decorated graphene structure
    Tahiri, N.
    Jabar, A.
    Bahmad, L.
    PHYSICS LETTERS A, 2017, 381 (04) : 189 - 193
  • [50] Probing 2D sub-bands of bi-layer graphene
    Huang, Cheng-Wen
    Lin, Bing-Jie
    Juang, Sung-Yen
    Shih, Fu-Yu
    Wang, Wei-Hua
    Liu, Chih-Yi
    Chui, Hsiang-Chen
    RSC ADVANCES, 2014, 4 (92) : 51067 - 51071