Graphene-based one-dimensional photonic crystal
arXiv:1110.4440 · doi:10.1088/0953-8984/24/1/015305
Abstract
A novel type of one-dimensional (1D) photonic crystal formed by the array of periodically located stacks of alternating graphene and dielectric stripes embedded into a background dielectric medium is proposed. The wave equation for the electromagnetic wave propagating in such structure solved in the framework of the Kronig-Penney model. The frequency band structure of 1D graphene-based photonic crystal is obtained analytically as a function of the filling factor and the thickness of the dielectric between graphene stripes. The photonic frequency corresponding to the electromagnetic wave localized by the defect of photonic crystal formed by the extra dielectric placed on the place of the stack of alternating graphene and dielectric stripes is obtained.
8 pages, 2 figures
References in corpus (15)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Unconventional Integer Quantum Hall effect in graphene
- Optical properties of graphene
- Optical far-infrared properties of graphene monolayer and multilayers
- Quantum Hall Ferromagnetism in Graphene
- Space-time dispersion of graphene conductivity
- Is Graphene a Fermi Liquid?
- Magnetic oscillations in planar systems with the Dirac-like spectrum of quasiparticle excitations II: transport properties
- Fractional Quantum Hall Effect in Graphene
- Quantum kinetic equation and universal conductance fluctuations in graphene
- Optical properties of graphene: the Fermi liquid approach
- Graphene-based photonic crystal
- A Study of Hadron Deformation in Lattice QCD
- Anomalous far infrared monochromatic transmission through a film of type-II superconductor in magnetic field
Cited by in corpus (7)
- Graphene nanoribbon based spaser
- Scattering of surface plasmon-polaritons in a graphene multilayer photonic crystal with inhomogeneous doping
- Photonic Hall effect
- Plasmonics in the visible domain for a one-dimensional truncated photonic crystal terminated by graphene: sensing beyond Dirac point's approximation
- Transmissive optomechanical platforms with engineered spatial defects
- Photonic band-gap transmission map of graphene in a defective optical structure
- Faraday effect optical sensing of single-molecules by graphene-based layered structures