Modeling of photonic integrated resonators using advanced scattering matrix methods

Fuente: arXiv
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1. Verfasser: Moss, David J.
Format: Preprint
Veröffentlicht: 2025
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author Moss, David J.
author_facet Moss, David J.
contents We propose a universal approach for modeling complex integrated photonic resonators based on the scattering matrix method. By dividing devices into basic elements including directional cou-plers and connecting waveguides, our approach can be used to model integrated photonic reso-nators with both unidirectional and bidirectional light propagation, with the simulated spectral response showing good agreement with experimental results. A simplified form of our ap-proach, which divides devices into several independent submodules such as microring resonators and Sagnac interferometers, is also introduced to streamline the calculation of spectral transfer functions. Finally, we discuss the deviations introduced by approximations in our modeling, along with strategies for improving modeling accuracy. Our approach is universal across dif-ferent integrated platforms, providing a useful tool for designing and optimizing integrated photonic devices with complex configurations.
format Preprint
id arxiv_https___arxiv_org_abs_2502_01552
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Modeling of photonic integrated resonators using advanced scattering matrix methods
Moss, David J.
Optics
Applied Physics
We propose a universal approach for modeling complex integrated photonic resonators based on the scattering matrix method. By dividing devices into basic elements including directional cou-plers and connecting waveguides, our approach can be used to model integrated photonic reso-nators with both unidirectional and bidirectional light propagation, with the simulated spectral response showing good agreement with experimental results. A simplified form of our ap-proach, which divides devices into several independent submodules such as microring resonators and Sagnac interferometers, is also introduced to streamline the calculation of spectral transfer functions. Finally, we discuss the deviations introduced by approximations in our modeling, along with strategies for improving modeling accuracy. Our approach is universal across dif-ferent integrated platforms, providing a useful tool for designing and optimizing integrated photonic devices with complex configurations.
title Modeling of photonic integrated resonators using advanced scattering matrix methods
topic Optics
Applied Physics
url https://arxiv.org/abs/2502.01552