Ultra-compact Spatial Terahertz Switch Based on Graphene Plasmonic-Coupled Waveguide

被引:19
|
作者
Dehghan, Mehdi [1 ]
Moravvej-Farshi, Mohammad Kazem [2 ]
Ghaffari-Miab, Mohsen [2 ]
Jabbari, Masoud [3 ]
Darvish, Ghafar [1 ]
机构
[1] Islamic Azad Univ, Dept Elect Engn, Sci & Res Branch, Tehran 1477893855, Iran
[2] Tarbiat Modares Univ, Fac Elect & Comp Engn, Nano Plasmophoton Res Grp, Tehran 1411713116, Iran
[3] Islamic Azad Univ, Dept Elect Engn, Marvdasht Branch, Marvdasht, Iran
关键词
Graphene; Plasmonic switches; Plasmonic router; Plasmonic waveguides; Surface plasmons; Terahertz; waveguide switche;
D O I
10.1007/s11468-019-00921-0
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We are proposing graphene (G)-based multilayered plasmonic spatial switch, operating at 10 THz. It is composed of hBN/Ag/hBN/G/hBN/G/hBN/SiO2/p(+)-Si multilayers. When a 10-THz transverse magnetic (TM)-polarized signal is normally incident upon the structure top surface, the nanoaperture devised in the Ag nanolayer, acting as a grating, excites surface plasmons at the top graphene micro-ribbons/hBN interface. These surface plasmons depending on the graphenes chemical potentials can be coupled to the lowerright or left graphene micro-ribbons and continue to propagate laterally towards the corresponding output port. Numerical simulations show that a change of Delta V-G approximate to +/- 2.7 Vin the voltage, applied to the gated micro-ribbons, can modulate their chemical potentials sufficiently to switch the right (left) output port fromON (OFF) toOFF(ON) and vice versa. Besides its low power consumption, the switch ultra-small dimensions make it a potential spatial router suitable for THz-integrated circuit applications.
引用
收藏
页码:1335 / 1345
页数:11
相关论文
共 50 条
  • [41] Design of a tetra-band MIM plasmonic absorber based on triangular arrays in an ultra-compact MIM waveguide
    Ebadi, Seyed Morteza
    Khani, Shiva
    OPTICAL AND QUANTUM ELECTRONICS, 2023, 55 (06)
  • [42] Ultra-compact primary colors filter based on plasmonic digital metamaterials
    Yuan, Huan
    Huang, Jie
    Han, Jingmin
    Zhang, Jinping
    Wang, Zehao
    Deng, Yang
    Wu, Jiagui
    Yang, Junbo
    OPTICS COMMUNICATIONS, 2021, 483
  • [43] Ultra-compact polarimeter based on a plasmonic spiral assisting by machine learning
    Zhou, Boxuan
    Yu, Yu
    Wu, Wenhao
    Zhang, Xinliang
    OSA CONTINUUM, 2019, 2 (11): : 3343 - 3349
  • [44] Tunable terahertz power divider based on graphene plasmonic waveguide
    Li Yang
    Hu Jian-Rong
    Li Jiu-Sheng
    INFRARED, MILLIMETER-WAVE, AND TERAHERTZ TECHNOLOGIES IV, 2016, 10030
  • [45] A symmetric terahertz graphene-based hybrid plasmonic waveguide
    Chen, Ming
    Sheng, Pengchi
    Sun, Wei
    Cai, Jianjin
    OPTICS COMMUNICATIONS, 2016, 376 : 41 - 46
  • [46] Analysis and simulation of terahertz graphene-based plasmonic waveguide
    Babak Parvaei
    Hassan Rasooli Saghai
    Mohamed Eldlio
    Optical and Quantum Electronics, 2018, 50
  • [47] Analysis and simulation of terahertz graphene-based plasmonic waveguide
    Parvaei, Babak
    Saghai, Hassan Rasooli
    Eldlio, Mohamed
    OPTICAL AND QUANTUM ELECTRONICS, 2018, 50 (08)
  • [48] Terahertz plasmonic switch based on periodic array of graphene/silicon
    Derakhshi, M.
    Fathi, D.
    SCIENTIA IRANICA, 2017, 24 (06) : 3452 - 3457
  • [49] Bidirectional terahertz plasmonic switch based on periodically structured graphene
    Dehghan, Mehdi
    Moravvej-Farshi, Mohammad Kazem
    Jabbari, Masoud
    Darvish, Ghafar
    Ghaffari-Miab, Mohsen
    JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2023, 40 (07) : 1773 - 1778
  • [50] Plasmonic finite-thickness metal-semiconductor-metal waveguide as ultra-compact modulator
    Babicheva, Viktoriia E.
    Malureanu, Radu
    Lavrinenko, Andrei V.
    PHOTONICS AND NANOSTRUCTURES-FUNDAMENTALS AND APPLICATIONS, 2013, 11 (04) : 323 - 334