Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures

The spectral behaviour and the real-time operation of Parity-Time (PT) symmetric coupled resonators are investigated. A Boundary Integral Equation (BIE) model is developed to study these structures in the frequency domain. The impact of realistic gain/loss material properties on the operation of the...

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Main Authors: Phang, Sendy, Vukovic, Ana, Gradoni, Gabriele, Sewell, Phillip, Benson, Trevor M., Creagh, Stephen C.
Format: Book Section
Published: Springer Nature 2017
Online Access:https://eprints.nottingham.ac.uk/50100/
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author Phang, Sendy
Vukovic, Ana
Gradoni, Gabriele
Sewell, Phillip
Benson, Trevor M.
Creagh, Stephen C.
author_facet Phang, Sendy
Vukovic, Ana
Gradoni, Gabriele
Sewell, Phillip
Benson, Trevor M.
Creagh, Stephen C.
author_sort Phang, Sendy
building Nottingham Research Data Repository
collection Online Access
description The spectral behaviour and the real-time operation of Parity-Time (PT) symmetric coupled resonators are investigated. A Boundary Integral Equation (BIE) model is developed to study these structures in the frequency domain. The impact of realistic gain/loss material properties on the operation of the PT-symmetric coupled resonators is also investigated using the time-domain Transmission-Line Modelling (TLM) method. The BIE method is also used to study the behaviour of an array of PT-microresonator photonic molecules.
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format Book Section
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institution University of Nottingham Malaysia Campus
institution_category Local University
last_indexed 2025-11-14T20:15:15Z
publishDate 2017
publisher Springer Nature
recordtype eprints
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spelling nottingham-501002020-05-04T19:16:06Z https://eprints.nottingham.ac.uk/50100/ Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures Phang, Sendy Vukovic, Ana Gradoni, Gabriele Sewell, Phillip Benson, Trevor M. Creagh, Stephen C. The spectral behaviour and the real-time operation of Parity-Time (PT) symmetric coupled resonators are investigated. A Boundary Integral Equation (BIE) model is developed to study these structures in the frequency domain. The impact of realistic gain/loss material properties on the operation of the PT-symmetric coupled resonators is also investigated using the time-domain Transmission-Line Modelling (TLM) method. The BIE method is also used to study the behaviour of an array of PT-microresonator photonic molecules. Springer Nature 2017-11-03 Book Section PeerReviewed Phang, Sendy, Vukovic, Ana, Gradoni, Gabriele, Sewell, Phillip, Benson, Trevor M. and Creagh, Stephen C. (2017) Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures. In: Recent Trends in Computational Photonics. Springer Series in Optical Sciences (204). Springer Nature, pp. 207-233. ISBN 9783319554372 https://link.springer.com/chapter/10.1007/978-3-319-55438-9_7
spellingShingle Phang, Sendy
Vukovic, Ana
Gradoni, Gabriele
Sewell, Phillip
Benson, Trevor M.
Creagh, Stephen C.
Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
title Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
title_full Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
title_fullStr Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
title_full_unstemmed Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
title_short Theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
title_sort theory and numerical modelling of parity-time symmetric structures in photonics: boundary integral equation for coupled microresonator structures
url https://eprints.nottingham.ac.uk/50100/
https://eprints.nottingham.ac.uk/50100/