Spectral Analysis of a Nanodipole Array above the Surface Impedance of Graphene by Green's Function

被引:0
|
作者
Cruz, A. F. S. [1 ]
Del Rosso, T. [2 ]
Dmitriev, V. [1 ]
Costa, K. Q. [1 ]
机构
[1] Fed Univ Para, Belem, Para, Brazil
[2] Pontifical Catholic Univ Rio De Janeiro, Rio De Janeiro, Brazil
关键词
Graphene; Plasmonics; Spectral Analysis; Green's Function; ANTENNA;
D O I
暂无
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In this paper, we present a spectral analysis of a nanodipole array above a graphene layer by the Periodic Green's Function (PGF) method. The graphene layer deposited on a dielectric substrate is modeled as a surface impedance with conductivity described by the Kubo model. The Green's function is obtained by the complex two-dimensional Fourier series transform, with impedance condition at the interface between the dielectric media. We performed a parametric analysis of the influence of chemical potential on the absorbance and the electromagnetic fields in the spectral domain. For the modeling used, the dispersion characteristic of graphene is also verified. From the spectral analysis we investigated the emergence of the Surface Plasmon Polariton (SPP) pole in the spectral representation. Finally, we compared the model based on impedance condition with a formulation that considers graphene with a finite thickness.
引用
收藏
页数:5
相关论文
共 50 条
  • [31] The circular homogeneous-ferrite microwave cirulator - An asypmtotic Green's function and impedance analysis
    Young, JL
    Sterbentz, JW
    IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2003, 51 (08) : 1939 - 1945
  • [32] The Hole Spectral Function in the Finite Temperature Green's Function Scheme
    A. A. Morales
    D. M. Yanga
    S. Kurihara
    Journal of Superconductivity, 2002, 15 : 277 - 280
  • [33] Green's Function and Radiation over a Periodic Surface: Reciprocity and Reversal Green's Function
    Nakayama, Junichi
    Tamura, Yasuhiko
    IEICE TRANSACTIONS ON ELECTRONICS, 2018, E101C (01): : 3 - 11
  • [34] Surface Impedance Analysis of Graphene Nanoribbon for High Frequency Applications
    Nandy, Turja
    Debnath, Manish
    2019 5TH INTERNATIONAL CONFERENCE ON ADVANCES IN ELECTRICAL ENGINEERING (ICAEE), 2019, : 732 - 736
  • [35] Green's Function on a Parabolic Analytic Surface
    Sadullaev, Azimbay S.
    Kamolov, Khursandbek K.
    JOURNAL OF SIBERIAN FEDERAL UNIVERSITY-MATHEMATICS & PHYSICS, 2023, 16 (02): : 253 - 264
  • [36] Diffraction analysis in surface acoustic wave devices using Green's function
    Zhou, Y
    Lin, JM
    Wu, HD
    Shui, YA
    ACTA PHYSICA SINICA-OVERSEAS EDITION, 1999, 8 : S154 - S158
  • [37] Coupled Topological Surface Modes in Gyrotropic Structures: Green's Function Analysis
    Gangaraj, S. Ali Hassani
    Monticone, Francesco
    IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2018, 17 (11): : 1993 - 1997
  • [38] Estimation of Analyte's Vertical Positions above the Surface of Nanocapacitor Array Biosensors
    Goldoni, Daniele
    Ongaro, Claudio
    Orazi, Leonardo
    Rovati, Luigi
    Selmi, Luca
    2023 IEEE SENSORS, 2023,
  • [39] On the Green's function for the Helmholtz operator in an impedance circular cylindrical waveguide
    Perez-Arancibia, Carlos
    Duran, Mario
    JOURNAL OF COMPUTATIONAL AND APPLIED MATHEMATICS, 2010, 235 (01) : 244 - 262
  • [40] Dyadic Green's Function of a Conical Cavity With Impedance Spherical Cap
    Masumnia-Bisheh, Khadijeh
    Ghaffari-Miab, Mohsen
    Forooraghi, Keyvan
    IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2018, 66 (11) : 6015 - 6022