Theory and Numerical Modelling of Parity-Time Symmetric Structures in Photonics: Boundary Integral Equation for Coupled Microresonator Structures
Abstract
The spectral behaviour and the real-time operation of Parity-Time (PT 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 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.
Keywords
Cite
@article{arxiv.1802.02817,
title = {Theory and Numerical Modelling of Parity-Time Symmetric Structures in Photonics: Boundary Integral Equation for Coupled Microresonator Structures},
author = {Sendy Phang and Ana Vukovic and Gabriele Gradoni and Phillip Sewell and Trevor M. Benson and Stephen C. Creagh},
journal= {arXiv preprint arXiv:1802.02817},
year = {2022}
}
Comments
Phang S., Vukovic A., Gradoni G., Sewell P.D., Benson T.M., Creagh S.C. (2017) Theory and Numerical Modelling of Parity-Time Symmetric Structures in Photonics: Boundary Integral Equation for Coupled Microresonator Structures. In: Agrawal A., Benson T., De La Rue R., Wurtz G. (eds) Recent Trends in Computational Photonics. Springer Series in Optical Sciences, vol 204. Springer, Cham