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Coupled Multiphysics Modeling of Semiconductor Lasers
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Authors
Z. Sikorski, Y. Jiang, T. Czyszanowski, A. Przekwas, and M. Turowski CFD Research Corporation
Abstract

Comprehensive models of semiconductor lasers are required to predict realistic behavior of various laser devices for the spatially nonuniform gain has visible effect on laser dynamics and parameters, like threshold gain. Consistent solution of coupled electrical, thermal, gain and optical problems was achieved by CFD-ACE+ integrated solver. Integration of multiphysics into a single computational environment allowed for high-efficiency, high-fidelity modeling of modern semiconductor lasers, including vertical-cavity surfac-emitting lasers (VCSELs) and edge-emitting lasers (EELs).

This paper shows a full self-consistent coupling of the most-advanced-physics models of spatially dependent current flow, temperature effects, gain, and optical modes development and competition. Three coupled modules: Semiconductor Device, Thermal, and Optics, of CFD-ACE+ general purpose multiphysics software, are used in the present study.

Keywords
Semiconductor lasers, VCSELs, computational modeling
Source
NanoTech2003 Conference, San Francisco, CA, USA, 23-27 February 2003
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