Coupled parity-time symmetric cavities: results from transmission line modelling simulations

This paper studies the impact of a dispersive gain/loss material model on Parity-Time (PT) coupled microresonator cavity structures using the time-domain Transmission-Line Modelling method. A modal analysis is also performed to compare the modal composition in the dispersive and non-dispersive cases...

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Main Authors: Phang, Sendy, Vukovic, Ana, Creagh, Stephen, Sewell, Phillip D., Gradoni, Gabriele, Benson, Trevor M.
Format: Conference or Workshop Item
Published: 2015
Online Access:https://eprints.nottingham.ac.uk/29392/
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author Phang, Sendy
Vukovic, Ana
Creagh, Stephen
Sewell, Phillip D.
Gradoni, Gabriele
Benson, Trevor M.
author_facet Phang, Sendy
Vukovic, Ana
Creagh, Stephen
Sewell, Phillip D.
Gradoni, Gabriele
Benson, Trevor M.
author_sort Phang, Sendy
building Nottingham Research Data Repository
collection Online Access
description This paper studies the impact of a dispersive gain/loss material model on Parity-Time (PT) coupled microresonator cavity structures using the time-domain Transmission-Line Modelling method. A modal analysis is also performed to compare the modal composition in the dispersive and non-dispersive cases. Furthermore, a waveguide-to-waveguide coupler based on the coupled PT-resonant microresonators is analysed to see how the resulting modal profiles are manifested in the power transmitted between input/output ports.
first_indexed 2025-11-14T19:05:39Z
format Conference or Workshop Item
id nottingham-29392
institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T19:05:39Z
publishDate 2015
recordtype eprints
repository_type Digital Repository
spelling nottingham-293922020-05-04T20:11:40Z https://eprints.nottingham.ac.uk/29392/ Coupled parity-time symmetric cavities: results from transmission line modelling simulations Phang, Sendy Vukovic, Ana Creagh, Stephen Sewell, Phillip D. Gradoni, Gabriele Benson, Trevor M. This paper studies the impact of a dispersive gain/loss material model on Parity-Time (PT) coupled microresonator cavity structures using the time-domain Transmission-Line Modelling method. A modal analysis is also performed to compare the modal composition in the dispersive and non-dispersive cases. Furthermore, a waveguide-to-waveguide coupler based on the coupled PT-resonant microresonators is analysed to see how the resulting modal profiles are manifested in the power transmitted between input/output ports. 2015 Conference or Workshop Item PeerReviewed Phang, Sendy, Vukovic, Ana, Creagh, Stephen, Sewell, Phillip D., Gradoni, Gabriele and Benson, Trevor M. (2015) Coupled parity-time symmetric cavities: results from transmission line modelling simulations. In: 17th International Conference on Transparent Optical Networks ICTON 2015, 5-9 July, 2015, Budapest, Hungary. (In Press)
spellingShingle Phang, Sendy
Vukovic, Ana
Creagh, Stephen
Sewell, Phillip D.
Gradoni, Gabriele
Benson, Trevor M.
Coupled parity-time symmetric cavities: results from transmission line modelling simulations
title Coupled parity-time symmetric cavities: results from transmission line modelling simulations
title_full Coupled parity-time symmetric cavities: results from transmission line modelling simulations
title_fullStr Coupled parity-time symmetric cavities: results from transmission line modelling simulations
title_full_unstemmed Coupled parity-time symmetric cavities: results from transmission line modelling simulations
title_short Coupled parity-time symmetric cavities: results from transmission line modelling simulations
title_sort coupled parity-time symmetric cavities: results from transmission line modelling simulations
url https://eprints.nottingham.ac.uk/29392/