Přístupnostní navigace
E-application
Search Search Close
Publication detail
ČTYROKÝ, J. PETRÁČEK, J. KWIECIEN, P. RICHTER, I KUZMIAK, V.
Original Title
Graphene on an optical waveguide: comparison of simulation approaches
Type
journal article in Web of Science
Language
English
Original Abstract
Recently, unusual properties of novel two-dimensional materials like graphene have revolutionized many branches of science and technology. Adequate numerical simulations of photonic devices comprising graphene layers require new approaches or modified methods. In this paper we present comparison of results obtained with three representations of a graphene monolayer: (1) an infinitely thin sheet with a finite surface complex conductivity, (2) a thin layer of a finite thickness exhibiting uniaxially anisotropic complex permittivity, and (3) anisotropic permittivity perturbation in an infinitely small volume. Numerical solutions of rigorous dispersion equations were compared to each other and also with the results obtained with several commercial as well as proprietary software packets. Under proper conditions, all approaches provide comparable results.
Keywords
Graphene; Optical waveguides; Numerical simulations; Perturbation method; Boundary condition method; Volumetric method
Authors
ČTYROKÝ, J.; PETRÁČEK, J.; KWIECIEN, P.; RICHTER, I; KUZMIAK, V.
Released
25. 2. 2020
Publisher
SPRINGER
Location
DORDRECHT
ISBN
0306-8919
Periodical
Optical and Quantum Electronics
Year of study
52
Number
3
State
Kingdom of the Netherlands
Pages from
149-1
Pages to
149-14
Pages count
14
URL
https://link.springer.com/article/10.1007%2Fs11082-020-02265-0