Directly modulated lasers on InP membrane platform:design and simulation

Directly modulated laser (DML) design for InP membrane platform is proposed. In this platform, a stack containing contact layers and quantum wells is epitaxially grown on InP wafer, which is then adhesively bonded to Si substrate using BCB (benzo-cyclobutene). DML proposed makes use of weak tunable...

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Bibliographic Details
Main Authors: Zozulia, A., Williams, K., Jiao, Y.
Format: Article in Journal/Newspaper
Language:English
Published: 2021
Subjects:
DML
Online Access:https://research.tue.nl/en/publications/072e8660-a532-4fc1-9ba7-2d0ac25a271d
https://pure.tue.nl/ws/files/297910211/FullPaper_Zozulia_Benelux2021_final.pdf
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spelling ftuniveindcris:oai:pure.tue.nl:publications/072e8660-a532-4fc1-9ba7-2d0ac25a271d 2024-06-16T07:39:37+00:00 Directly modulated lasers on InP membrane platform:design and simulation Zozulia, A. Williams, K. Jiao, Y. 2021 application/pdf https://research.tue.nl/en/publications/072e8660-a532-4fc1-9ba7-2d0ac25a271d https://pure.tue.nl/ws/files/297910211/FullPaper_Zozulia_Benelux2021_final.pdf eng eng https://research.tue.nl/en/publications/072e8660-a532-4fc1-9ba7-2d0ac25a271d info:eu-repo/semantics/openAccess Zozulia , A , Williams , K & Jiao , Y 2021 , Directly modulated lasers on InP membrane platform : design and simulation . in Proceedings of the Annual Symposium of the IEEE Photonics Benelux Chapter : 25th-26th November 2021, University of Mons, Belgium . 25th Annual Symposium of the IEEE Photonics Benelux Chapter , Mons , Belgium , 25/11/21 . contributionToPeriodical 2021 ftuniveindcris 2024-05-23T00:20:55Z Directly modulated laser (DML) design for InP membrane platform is proposed. In this platform, a stack containing contact layers and quantum wells is epitaxially grown on InP wafer, which is then adhesively bonded to Si substrate using BCB (benzo-cyclobutene). DML proposed makes use of weak tunable distributed Bragg grating to extend the modulation bandwidth by detuned loading and photon-photon resonance. Photonic crystal reflector is used to maximize Q-factor of the cavity. Up to 80 GHz 3dB bandwidth is obtained in simulation. Article in Journal/Newspaper DML Eindhoven University of Technology research portal
institution Open Polar
collection Eindhoven University of Technology research portal
op_collection_id ftuniveindcris
language English
description Directly modulated laser (DML) design for InP membrane platform is proposed. In this platform, a stack containing contact layers and quantum wells is epitaxially grown on InP wafer, which is then adhesively bonded to Si substrate using BCB (benzo-cyclobutene). DML proposed makes use of weak tunable distributed Bragg grating to extend the modulation bandwidth by detuned loading and photon-photon resonance. Photonic crystal reflector is used to maximize Q-factor of the cavity. Up to 80 GHz 3dB bandwidth is obtained in simulation.
format Article in Journal/Newspaper
author Zozulia, A.
Williams, K.
Jiao, Y.
spellingShingle Zozulia, A.
Williams, K.
Jiao, Y.
Directly modulated lasers on InP membrane platform:design and simulation
author_facet Zozulia, A.
Williams, K.
Jiao, Y.
author_sort Zozulia, A.
title Directly modulated lasers on InP membrane platform:design and simulation
title_short Directly modulated lasers on InP membrane platform:design and simulation
title_full Directly modulated lasers on InP membrane platform:design and simulation
title_fullStr Directly modulated lasers on InP membrane platform:design and simulation
title_full_unstemmed Directly modulated lasers on InP membrane platform:design and simulation
title_sort directly modulated lasers on inp membrane platform:design and simulation
publishDate 2021
url https://research.tue.nl/en/publications/072e8660-a532-4fc1-9ba7-2d0ac25a271d
https://pure.tue.nl/ws/files/297910211/FullPaper_Zozulia_Benelux2021_final.pdf
genre DML
genre_facet DML
op_source Zozulia , A , Williams , K & Jiao , Y 2021 , Directly modulated lasers on InP membrane platform : design and simulation . in Proceedings of the Annual Symposium of the IEEE Photonics Benelux Chapter : 25th-26th November 2021, University of Mons, Belgium . 25th Annual Symposium of the IEEE Photonics Benelux Chapter , Mons , Belgium , 25/11/21 .
op_relation https://research.tue.nl/en/publications/072e8660-a532-4fc1-9ba7-2d0ac25a271d
op_rights info:eu-repo/semantics/openAccess
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