Effect of Carrier Transport on Thermal Distribution in Laser Diode

ABSTRAC:<br /> A comprehensive numerical model to simulate self-heating effects of laser diode under continuous-wave operation is presented. The model is self-consistently accounts for the close interaction between optical, electrical, and thermal processes in the laser diode. Electro-thermal...

Full description

Bibliographic Details
Main Author: M. I. Azawe
Format: Article
Language:Arabic
Published: College of Education for Pure Sciences 2009-06-01
Series:مجلة التربية والعلم
Subjects:
Online Access:https://edusj.mosuljournals.com/article_57678_bf6f577a1f7793eda178fcd057cb5467.pdf
id doaj-84c076ad98eb40e4ac9b45828b636604
record_format Article
spelling doaj-84c076ad98eb40e4ac9b45828b6366042020-11-25T01:35:04ZaraCollege of Education for Pure Sciencesمجلة التربية والعلم1812-125X2664-25302009-06-01222769110.33899/edusj.2009.5767857678Effect of Carrier Transport on Thermal Distribution in Laser DiodeM. I. AzaweABSTRAC:<br /> A comprehensive numerical model to simulate self-heating effects of laser diode under continuous-wave operation is presented. The model is self-consistently accounts for the close interaction between optical, electrical, and thermal processes in the laser diode. Electro-thermal simulation offers the possibility of examining the effects on device performance of structure. Thermal profiles and time-dependent heat diffusion is presented in this investigation. Current injection modified the Peltier coefficient at interfaces; and gives rise to thermoelectric cooling at the active region and on the device parameters. Lattice temperatures, included in the rate equations were found to shift the frequency of the resonant dominant mode of the laser diode emission. 3D thermal plot of the thermal distribution was obtained in order to assess the heat diffusion as carrier-dependent for the laser diode.https://edusj.mosuljournals.com/article_57678_bf6f577a1f7793eda178fcd057cb5467.pdfcarrier transportthermal distributionlaser diode
collection DOAJ
language Arabic
format Article
sources DOAJ
author M. I. Azawe
spellingShingle M. I. Azawe
Effect of Carrier Transport on Thermal Distribution in Laser Diode
مجلة التربية والعلم
carrier transport
thermal distribution
laser diode
author_facet M. I. Azawe
author_sort M. I. Azawe
title Effect of Carrier Transport on Thermal Distribution in Laser Diode
title_short Effect of Carrier Transport on Thermal Distribution in Laser Diode
title_full Effect of Carrier Transport on Thermal Distribution in Laser Diode
title_fullStr Effect of Carrier Transport on Thermal Distribution in Laser Diode
title_full_unstemmed Effect of Carrier Transport on Thermal Distribution in Laser Diode
title_sort effect of carrier transport on thermal distribution in laser diode
publisher College of Education for Pure Sciences
series مجلة التربية والعلم
issn 1812-125X
2664-2530
publishDate 2009-06-01
description ABSTRAC:<br /> A comprehensive numerical model to simulate self-heating effects of laser diode under continuous-wave operation is presented. The model is self-consistently accounts for the close interaction between optical, electrical, and thermal processes in the laser diode. Electro-thermal simulation offers the possibility of examining the effects on device performance of structure. Thermal profiles and time-dependent heat diffusion is presented in this investigation. Current injection modified the Peltier coefficient at interfaces; and gives rise to thermoelectric cooling at the active region and on the device parameters. Lattice temperatures, included in the rate equations were found to shift the frequency of the resonant dominant mode of the laser diode emission. 3D thermal plot of the thermal distribution was obtained in order to assess the heat diffusion as carrier-dependent for the laser diode.
topic carrier transport
thermal distribution
laser diode
url https://edusj.mosuljournals.com/article_57678_bf6f577a1f7793eda178fcd057cb5467.pdf
work_keys_str_mv AT miazawe effectofcarriertransportonthermaldistributioninlaserdiode
_version_ 1725068698175143936