In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes

This paper describes the way to stabilize in-junction-plane optical field distribution and emitted beam divergence in high-power 970-nm-band laser diodes (LDs). This is done by introducing a lateral periodic structure into the LD‟s wide-stripe-waveguide, designed to prefer and stabilize the selected...

Full description

Bibliographic Details
Main Authors: Andrzej Maląg, Grzegorz Sobczak, Elżbieta Dąbrowska, Marian Teodorczyk
Format: Article
Language:English
Published: AIMS Press 2019-01-01
Series:AIMS Electronics and Electrical Engineering
Subjects:
Online Access:https://www.aimspress.com/article/10.3934/ElectrEng.2019.4.370/fulltext.html
id doaj-02a03f1dbac643ed8f6d570c27bfb4bd
record_format Article
spelling doaj-02a03f1dbac643ed8f6d570c27bfb4bd2020-11-25T02:03:29ZengAIMS PressAIMS Electronics and Electrical Engineering2578-15882019-01-013437038110.3934/ElectrEng.2019.4.370In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodesAndrzej Maląg0Grzegorz Sobczak1Elżbieta Dąbrowska2Marian Teodorczyk31 Łukasiewicz Research Network - Institute of Electronic Materials Technology, 133 Wólczyńska str., 01-919 Warszawa, Poland2 Łukasiewicz Research Network - Institute of Electron Technology, 32/46 Lotników av., 02-668 Warszawa, Poland1 Łukasiewicz Research Network - Institute of Electronic Materials Technology, 133 Wólczyńska str., 01-919 Warszawa, Poland1 Łukasiewicz Research Network - Institute of Electronic Materials Technology, 133 Wólczyńska str., 01-919 Warszawa, PolandThis paper describes the way to stabilize in-junction-plane optical field distribution and emitted beam divergence in high-power 970-nm-band laser diodes (LDs). This is done by introducing a lateral periodic structure into the LD‟s wide-stripe-waveguide, designed to prefer and stabilize the selected (resonant) high-order lateral mode. According to modeling, in CW operation the gain equalization of lateral modes due to thermal index guiding leads to beam divergence stabilization by incorporating the modes up to the resonant one and cutting out higher ones. This was demonstrated experimentally in a wide drive current range. Such stability of a non-Gaussian laser beam profile with steep slopes can be interesting for many applications. Thanks to the drive current flow control by the periodic structure, the effects typical for conventional wide-stripe LDs, such as lateral current crowding, carrier accumulation at stripe edges and optical far-field blooming are not observed.https://www.aimspress.com/article/10.3934/ElectrEng.2019.4.370/fulltext.htmllaser diodeswaveguiding in junction planein-plane directional characteristicsbeam divergence stabilization
collection DOAJ
language English
format Article
sources DOAJ
author Andrzej Maląg
Grzegorz Sobczak
Elżbieta Dąbrowska
Marian Teodorczyk
spellingShingle Andrzej Maląg
Grzegorz Sobczak
Elżbieta Dąbrowska
Marian Teodorczyk
In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
AIMS Electronics and Electrical Engineering
laser diodes
waveguiding in junction plane
in-plane directional characteristics
beam divergence stabilization
author_facet Andrzej Maląg
Grzegorz Sobczak
Elżbieta Dąbrowska
Marian Teodorczyk
author_sort Andrzej Maląg
title In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
title_short In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
title_full In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
title_fullStr In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
title_full_unstemmed In-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
title_sort in-junction-plane beam divergence stabilization by lateral periodic structure in wide-stripe laser diodes
publisher AIMS Press
series AIMS Electronics and Electrical Engineering
issn 2578-1588
publishDate 2019-01-01
description This paper describes the way to stabilize in-junction-plane optical field distribution and emitted beam divergence in high-power 970-nm-band laser diodes (LDs). This is done by introducing a lateral periodic structure into the LD‟s wide-stripe-waveguide, designed to prefer and stabilize the selected (resonant) high-order lateral mode. According to modeling, in CW operation the gain equalization of lateral modes due to thermal index guiding leads to beam divergence stabilization by incorporating the modes up to the resonant one and cutting out higher ones. This was demonstrated experimentally in a wide drive current range. Such stability of a non-Gaussian laser beam profile with steep slopes can be interesting for many applications. Thanks to the drive current flow control by the periodic structure, the effects typical for conventional wide-stripe LDs, such as lateral current crowding, carrier accumulation at stripe edges and optical far-field blooming are not observed.
topic laser diodes
waveguiding in junction plane
in-plane directional characteristics
beam divergence stabilization
url https://www.aimspress.com/article/10.3934/ElectrEng.2019.4.370/fulltext.html
work_keys_str_mv AT andrzejmalag injunctionplanebeamdivergencestabilizationbylateralperiodicstructureinwidestripelaserdiodes
AT grzegorzsobczak injunctionplanebeamdivergencestabilizationbylateralperiodicstructureinwidestripelaserdiodes
AT elzbietadabrowska injunctionplanebeamdivergencestabilizationbylateralperiodicstructureinwidestripelaserdiodes
AT marianteodorczyk injunctionplanebeamdivergencestabilizationbylateralperiodicstructureinwidestripelaserdiodes
_version_ 1724947851263344640