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Measurement of the Linewidth Enhancement Factor of Semiconductor Lasers Based on the Optical Feedback Self-Mixing Effect

IEEE Photonics Technology Letters · 2004 · Vol. 16(4) · pp. 990–992
Yanguang YuG. GiulianiSilvano Donati

Abstract

A new method for the measurement of the linewidth enhancement factor of semiconductor lasers is presented, based on the interferometric self-mixing effect. It is a fast and easy to perform method that does not require radio frequency nor optical spectrum measurements. A small fraction of the emitted light is backreflected into the laser cavity by a remote target driven by a sine waveform. The mixing of the returned and the lasing fields generates a modulation of the optical output power in the form of an interferometric waveform, with a shape that depends on the optical feedback strength and the linewidth enhancement factor /spl alpha/, according to the well-known Lang-Kobayashi theory. We show that the value of /spl alpha/ can be retrieved from a simple measurement of two characteristic time intervals of the interferometric waveform. Experimental results obtained on different laser diodes show an accuracy of /spl plusmn/6.5%.

Semiconductor Lasers and Optical DevicesPhotonic and Optical DevicesAdvanced Fiber Laser TechnologiesLaser linewidthWaveformSemiconductor laser theoryLaserOpticsLasing thresholdInterferometryLaser diodePhysicsInjection seeder
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References
External optical feedback effects on semiconductor injection laser properties
IEEE Journal of Quantum Electronics · 1980 · 2,753 citations
Linewidth broadening factor in semiconductor lasers--An overview
IEEE Journal of Quantum Electronics · 1987 · 630 citations
Theory of the linewidth of semiconductor lasers
IEEE Journal of Quantum Electronics · 1982 · 2,393 citations
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