The University of Southampton
University of Southampton Institutional Repository

Comprehensive FDTD modelling of photonic crystal waveguide components

Comprehensive FDTD modelling of photonic crystal waveguide components
Comprehensive FDTD modelling of photonic crystal waveguide components
Planar photonic crystal waveguide structures have been modelled using the finite-difference-time-domain method and perfectly matched layers have been employed as boundary conditions. Comprehensive numerical calculations have been performed and compared to experimentally obtained transmission spectra for various photonic crystal waveguides. It is found that within the experimental fabrication tolerances the calculations correctly predict the measured transmission levels and other major transmission features.
1094-4087
234-248
Lavrinenko, A.
5e9d1b5d-4bc7-4bfa-b17f-d7d3f386273e
Borel, P.I.
ceff05dc-f1b6-43f2-802f-ef65eb175626
Frandsen, L.H.
99f2197c-0b90-4b8a-9fbf-5e2f64038824
Thorhauge, M.
e472e0fa-4836-4d85-8b8a-7bacf99e07ce
Harpoth, A.
b30c50fd-c52d-4783-ae48-05941a92a667
Kristensen, M.
1eb8666b-6abf-47dd-80fb-b4c0a0ccc6a4
Niemi, T.
8cfcc55c-709e-46a4-9bd8-e9a104e53349
Chong, H.M.H.
795aa67f-29e5-480f-b1bc-9bd5c0d558e1
Lavrinenko, A.
5e9d1b5d-4bc7-4bfa-b17f-d7d3f386273e
Borel, P.I.
ceff05dc-f1b6-43f2-802f-ef65eb175626
Frandsen, L.H.
99f2197c-0b90-4b8a-9fbf-5e2f64038824
Thorhauge, M.
e472e0fa-4836-4d85-8b8a-7bacf99e07ce
Harpoth, A.
b30c50fd-c52d-4783-ae48-05941a92a667
Kristensen, M.
1eb8666b-6abf-47dd-80fb-b4c0a0ccc6a4
Niemi, T.
8cfcc55c-709e-46a4-9bd8-e9a104e53349
Chong, H.M.H.
795aa67f-29e5-480f-b1bc-9bd5c0d558e1

Lavrinenko, A., Borel, P.I., Frandsen, L.H., Thorhauge, M., Harpoth, A., Kristensen, M., Niemi, T. and Chong, H.M.H. (2004) Comprehensive FDTD modelling of photonic crystal waveguide components. Optics Express, 12 (2), 234-248. (doi:10.1364/OPEX.12.000234).

Record type: Article

Abstract

Planar photonic crystal waveguide structures have been modelled using the finite-difference-time-domain method and perfectly matched layers have been employed as boundary conditions. Comprehensive numerical calculations have been performed and compared to experimentally obtained transmission spectra for various photonic crystal waveguides. It is found that within the experimental fabrication tolerances the calculations correctly predict the measured transmission levels and other major transmission features.

Text
oe-12-2-234 - Version of Record
Available under License Creative Commons Attribution.
Download (984kB)

More information

Published date: 8 January 2004
Organisations: Nanoelectronics and Nanotechnology

Identifiers

Local EPrints ID: 264921
URI: http://eprints.soton.ac.uk/id/eprint/264921
ISSN: 1094-4087
PURE UUID: 6bfc0682-d617-40e6-aeff-05d1ea87be10
ORCID for H.M.H. Chong: ORCID iD orcid.org/0000-0002-7110-5761

Catalogue record

Date deposited: 04 Dec 2007 15:19
Last modified: 15 Mar 2024 03:30

Export record

Altmetrics

Contributors

Author: A. Lavrinenko
Author: P.I. Borel
Author: L.H. Frandsen
Author: M. Thorhauge
Author: A. Harpoth
Author: M. Kristensen
Author: T. Niemi
Author: H.M.H. Chong ORCID iD

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×