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  4. Intensity modulation and chirp of 1.55-mu m multiple-quantum well laser diodes. Modeling and experimental verification
 
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1999
Journal Article
Title

Intensity modulation and chirp of 1.55-mu m multiple-quantum well laser diodes. Modeling and experimental verification

Other Title
Intensitätsmodulation und Chirp bei 1.55 mu m Mehrfach-Quantenfilm-Laserdioden. Modellierung und experimentelle Verifikation
Abstract
A laser model based on rate equations for the simulation of high-speed optical access networks using directly modulated lasers is presented. The laser model is implemented into a commercial microwave simulator (Microwave Design System (MDS), Hewlett Packard). The extraction of dc- and small-signal RF parameters of the laser is described. The laser model is verified by the very good agreement of simulated and measured large-signal intensity and chirp waveforms. Model validity is further confirmed by comparing measured and simulated 10Gbit/s eye diagrams after up to 100 km of standard fiber.
Author(s)
Czotscher, K.
Weisser, S.
Leven, A.
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
Rosenzweig, Josef  
Journal
IEEE Journal of Selected Topics in Quantum Electronics  
DOI
10.1109/2944.788424
Language
English
Fraunhofer-Institut für Angewandte Festkörperphysik IAF  
Keyword(s)
  • DFB laser

  • Distributed Feedback Laser

  • frequency modulation

  • Frequenzmodulation

  • Intensitätsmodulation

  • intensity modulation

  • optical communication

  • optische Kommunikation

  • Quantenfilmlaser

  • quantum-well laser

  • time-frequency analysis

  • Zeit-Frequenzanalyse

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