• DocumentCode
    11361
  • Title

    Tunable Spontaneous Emission From Layered Graphene/Dielectric Tunnel Junctions

  • Author

    Khorasani, S.A.

  • Author_Institution
    Sch. of Electr. Eng., Sharif Univ. of Technol., Tehran, Iran
  • Volume
    50
  • Issue
    5
  • fYear
    2014
  • fDate
    May-14
  • Firstpage
    307
  • Lastpage
    313
  • Abstract
    There has been a rapidly growing interest in optoelectronic properties of graphene and associated structures. Despite the general belief on absence of spontaneous emission in graphene, which is normally attributed to its unique ultrafast carrier momentum relaxation mechanisms, there exist a few recent evidences of strong optical gain and spontaneous light emission from monolayer graphene, supported by observations of dominant role of out-of-plane excitons in polycyclic aromatic hydrocarbons. In this paper, we develop a novel concept of light emission and optical gain from simple vertical graphene/dielectric tunnel junctions. It is theoretically shown that the possible optical gain or emission spectrum will be easily tunable by the applied voltage. We present details of quantum mechanical calculations and perform an exact analysis of field-assisted tunneling using transfer matrices combined with expansion on Airy´s functions.
  • Keywords
    dielectric materials; graphene; optical tuning; spontaneous emission; transfer function matrices; tunnelling; Airy´s functions; C; applied voltage; emission spectrum; field-assisted tunneling; layered graphene/dielectric tunnel junctions; light emission; optical gain; quantum mechanical calculations; transfer matrices; tunable spontaneous emission; vertical graphene/dielectric tunnel junctions; Color; Dielectrics; Graphene; Junctions; Materials; Stimulated emission; Tunneling; Graphene; light emission; tunneling;
  • fLanguage
    English
  • Journal_Title
    Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9197
  • Type

    jour

  • DOI
    10.1109/JQE.2014.2308976
  • Filename
    6750038