• DocumentCode
    191218
  • Title

    Exploitation of graphene as HIS and RIS for devices in the MW and THz frequency ranges

  • Author

    Aldrigo, Martino ; Dragoman, Mircea ; Costanzo, Alessandra ; Masotti, Diego

  • Author_Institution
    MIMOMEMS, IMT, Bucharest, Romania
  • fYear
    2014
  • fDate
    6-9 Oct. 2014
  • Firstpage
    355
  • Lastpage
    358
  • Abstract
    Graphene has become an outstanding material for revolutionary wireless applications in the microwave and terahertz/infrared frequency ranges. Due to its unique physical characteristics, a family of completely new devices can be developed by exploiting graphene´s behaviour as High Impedance Surface (HIS) or highly-Reactive Impedance Surface (RIS). In this paper we theoretically investigate first a 10 GHz-resonant gold dipole antenna suspended over a graphene flake acting as a HIS reflector: the radiator can be placed at a very close distance from the graphene ground by keeping at the same time very good radiation performance with respect to classical metal reflectors. Second, we consider a gold dipole antenna operating at 10 THz directly attached to a graphene layer. Excellent radiation performance can be achieved thanks to the highly-inductive surface impedance of graphene at such high frequencies. An in-depth description of the possibility of varying graphene´s conductivity by means of an applied gate voltage is provided, thus demonstrating how radiating properties can be tuned by simply applying a proper voltage to the reflector. Hence, the proposed antennas can be considered in reason as the starting point for innovative graphene-based mm- and μm-systems with unique tunability properties.
  • Keywords
    graphene; microwave materials; reflector antennas; HIS; HIS reflector; RIS; frequency 10 GHz; graphene flake; graphene ground; high impedance surface; highly reactive impedance surface; microwave frequency range; radiation performance; resonant gold dipole antenna; terahertz frequency range; Conductivity; Dipole antennas; Gold; Graphene; Impedance; Reflector antennas; Surface impedance; Graphene; antenna; high impedance surface; reactive impedance surface;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Microwave Conference (EuMC), 2014 44th European
  • Conference_Location
    Rome
  • Type

    conf

  • DOI
    10.1109/EuMC.2014.6986443
  • Filename
    6986443