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Turn-on transient dynamics of a semiconductor laser with optical feedback

โœ Scribed by M. S. Torre; C. Masoller


Publisher
John Wiley and Sons
Year
2001
Tongue
English
Weight
103 KB
Volume
14
Category
Article
ISSN
0894-3370

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โœฆ Synopsis


Abstract

We study the effect of lateral carrier diffusion on the transient turnโ€on of a semiconductor laser with optical feedback. The numerical simulations are based on the Langโ€“Kobayashi model, and on an extension of the model that includes lateral profiles for the carrier density and the optical field. For moderately strong feedback, intensity pulses characterize the dynamics of the turnโ€on, with a repetition rate at the external cavity roundโ€trip time. We find that carrier diffusion has an important effect when the laser is biased close to the solitary threshold. For low carrier diffusion the intensity drops to a nearly zero value in between the pulses; for fast carrier diffusion, the spatial holes in the carrier profile burned by the intensity pulses are quickly replenished, and the intensity does not decay to a zero value in between the pulses. The results of our analysis show that the effect of diffusion is qualitatively well modelled by a nonโ€linear gain saturation coefficient different from zero in the spaceโ€independent Langโ€“Kobayashi model. Copyright ยฉ 2001 John Wiley & Sons, Ltd.


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