Nanoscale Research Letters (Apr 2018)

Electromagnetic Field Redistribution in Metal Nanoparticle on Graphene

  • Keke Li,
  • Anping Liu,
  • Dapeng Wei,
  • Keke Yu,
  • Xiaonan Sun,
  • Sheng Yan,
  • Yingzhou Huang

DOI
https://doi.org/10.1186/s11671-018-2535-0
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 7

Abstract

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Abstract Benefiting from the induced image charge on metal film, the light energy is confined on a film surface under metal nanoparticle dimer, which is called electromagnetic field redistribution. In this work, electromagnetic field distribution of metal nanoparticle monomer or dimer on graphene is investigated through finite-difference time-domain method. The results point out that the electromagnetic field (EM) redistribution occurs in this nanoparticle/graphene hybrid system at infrared region where light energy could also be confined on a monolayer graphene surface. Surface charge distribution was analyzed using finite element analysis, and surface-enhanced Raman spectrum (SERS) was utilized to verify this phenomenon. Furthermore, the data about dielectric nanoparticle on monolayer graphene demonstrate this EM redistribution is attributed to strong coupling between light-excited surface charge on monolayer graphene and graphene plasmon-induced image charge on dielectric nanoparticle surface. Our work extends the knowledge of monolayer graphene plasmon, which has a wide range of applications in monolayer graphene-related film.

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