Article Dans Une Revue IEEE Journal of Quantum Electronics Année : 1984

Quantum phase noise and field correlation in single frequency semiconductor laser systems

Résumé

The influence of quantum phase fluctuations which affect single frequency semiconductor lasers in various coherent detection systems is discussed in terms of photocurrent autocorrelation and spectral density functions. The general treatment given in this paper can be applied in diverse practical cases and points out the problems of phase correlation and phase matching between the two mixed optical beams. In the more general case the photocurrent spectrum is found to be composed of discrete and quasi-Lorentzian parts whose energies and spectral spreads are discussed as a function of the laser line width, the phase matching and the phase correlation between the two coherently combined fields

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Dates et versions

hal-04125367 , version 1 (12-06-2023)

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Philippe Gallion, G. Debarge. Quantum phase noise and field correlation in single frequency semiconductor laser systems. IEEE Journal of Quantum Electronics, 1984, 20 (4), pp.343-349. ⟨10.1109/JQE.1984.1072399⟩. ⟨hal-04125367⟩
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