2003IEEE Journal of Quantum ElectronicsRequires access

Anomalous linewidth narrowing in microwave beat frequency spectra between adjacent longitudinal modes in semiconductor lasers

Louis F. DeChiaro, Robert G. Chemelli

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Abstract

Microwave frequency signals resulting from the beats between adjacent longitudinal modes in long-cavity semiconductor lasers have been experimentally observed and numerically modeled by a rate-equation simulation. A periodic collapse of the beat frequency linewidth is observed and attributed to the onset of intermodal correlations in mode competition noise for values of bias current very close to those at which two adjacent longitudinal modes exhibit equal gain.

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What this paper is about

Microwave frequency signals resulting from the beats between adjacent longitudinal modes in long-cavity semiconductor lasers have been experimentally observed and numerically modeled by a rate-equation simulation. A periodic collapse of the beat frequency linewidth is observed and attributed to the onset of intermodal correlations in mode competition noise for values of bias current very close to those at which two adjacent longitudinal modes exhibit equal gain.

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Available abstract

Microwave frequency signals resulting from the beats between adjacent longitudinal modes in long-cavity semiconductor lasers have been experimentally observed and numerically modeled by a rate-equation simulation. A periodic collapse of the beat frequency linewidth is observed and attributed to the onset of intermodal correlations in mode competition noise for values of bias current very close to those at which two adjacent longitudinal modes exhibit equal gain.

Key concepts: Laser linewidth, Semiconductor laser theory, Longitudinal mode, Beat (acoustics), Microwave, Laser, Optics, Spectral line

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