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Coherence collapse in single-mode semiconductor lasers due to optical feedback

IEEE Journal of Quantum Electronics · 1985 · Vol. 21(6) · pp. 674–679
D. LenstraB.H. VerbeekArie den Boef

Abstract

Line broadening up to 25 GHz in a single-mode semiconductor laser with relatively strong optical feedback is reported and theoretically analyzed. Measurements of the coherence function were performed using a Michelson interferometer and demonstrate that the coherence length decreases by a factor 1000 (to approximately 10 mm) due to optical feedback. A self-consistent theoretical description is given, which is based on the view that coherence collapse is maintained due to optical-feedback-delay effects, in which quantum fluctuations play no role of importance. A connection with recently suggested chaotic behavior is made. The theoretical results obtained are in good qualitative and reasonable quantitative agreement with measurements.

Semiconductor Lasers and Optical DevicesPhotonic and Optical DevicesOptical Network TechnologiesCoherence (philosophical gambling strategy)Michelson interferometerOpticsSemiconductor laser theoryLaserPhysicsInterferometryDegree of coherenceCoherence lengthSingle-mode optical fiber
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References
External optical feedback effects on semiconductor injection laser properties
IEEE Journal of Quantum Electronics · 1980 · 2,753 citations
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