Intensity Spread Analysis of Programmable Photonic Circuits with Parasitics

Small stochastic imperfections in the phase and coupling (<; 1%) of tunable components in programmable photonics circuits introduce unwanted interferences deteriorating their frequency response. Performing Monte-Carlo simulations, we investigate such imperfections for different routings of light...

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Published in2019 IEEE Photonics Society Summer Topical Meeting Series (SUM) pp. 1 - 2
Main Authors Zand, Iman, Abasahl, Banafsheh, Bogaerts, Wim
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.07.2019
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Abstract Small stochastic imperfections in the phase and coupling (<; 1%) of tunable components in programmable photonics circuits introduce unwanted interferences deteriorating their frequency response. Performing Monte-Carlo simulations, we investigate such imperfections for different routings of light through a 7-cells hexagonal mesh with different biasing schemes.
AbstractList Small stochastic imperfections in the phase and coupling (<; 1%) of tunable components in programmable photonics circuits introduce unwanted interferences deteriorating their frequency response. Performing Monte-Carlo simulations, we investigate such imperfections for different routings of light through a 7-cells hexagonal mesh with different biasing schemes.
Author Bogaerts, Wim
Abasahl, Banafsheh
Zand, Iman
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Snippet Small stochastic imperfections in the phase and coupling (<; 1%) of tunable components in programmable photonics circuits introduce unwanted interferences...
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SubjectTerms Bars
Couplers
Couplings
Monte Carlo methods
Phase shifters
Photonics
RLC circuits
Title Intensity Spread Analysis of Programmable Photonic Circuits with Parasitics
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