Flat-band localization and self-collimation of light in photonic crystals
Optics
2019-03-05 v1
Abstract
We investigate the optical properties of a photonic crystal composed of a quasi-one-dimensional flat-band lattice array through finite-difference time-domain simulations. The photonic bands contain flat bands (FBs) at specific frequencies, which correspond to compact localized states as a consequence of destructive interference. The FBs are shown to be nondispersive along the line, but dispersive along the line. The FB localization of light in a single direction only results in a self-collimation of light propagation throughout the photonic crystal at the FB frequency.
Keywords
Cite
@article{arxiv.1801.08671,
title = {Flat-band localization and self-collimation of light in photonic crystals},
author = {Nojoon Myoung and Hee Chul Park and Ajith Ramachandran and Elefterios Lidorikis and Jung-Wan Ryu},
journal= {arXiv preprint arXiv:1801.08671},
year = {2019}
}
Comments
18 single-column pages, 7 figures including graphical toc