Self-quenching of fundamental phase and amplitude noise in semiconductor lasers with dispersive loss
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference7 articles.
1. Methods for narrowing the emission line of an injection laser
2. Detuned loading in coupled cavity semiconductor lasers—effect on quantum noise and dynamics
3. Observation of modulation speed enhancement, frequency modulation suppression, and phase noise reduction by detuned loading in a coupled‐cavity semiconductor laser
4. Frequency stabilization of semiconductor lasers by resonant optical feedback
5. Frequency, intensity, and field fluctuations in laser oscillators
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