IEEE Journal of Quantum Electronics · 1996 · 19 citations · 17 references
Short-pulse LasersPhotonicsOptical PumpingEngineeringLaser ScienceSemiconductor LasersDownchirped PulsesApplied PhysicsSteady-state AnalysisSupermode SolutionsOptoelectronicsHigh-power LasersOptical Amplifier
We present a steady-state analysis of high-repetition-rate passively mode-locked semiconductor lasers. The analysis includes effects of amplitude-to-phase coupling in both gain and absorber sections. A many-mode eigenvalue approach is presented to obtain supermode solutions. Using a nearest-neighbor mode coupling approximation, chirp-free pulse generation and electrically chirp-controlled operation are explained for the first time. The presence of a nonzero alpha parameter is found to change the symmetry of the supermode and significantly reduce the mode-locking range over which the lowest order supermode remains the minimum gain solution. An increase in absorber strength tends to lead to downchirped pulses. The effects of individual laser parameters are considered, and agreement with recent experimental results is discussed.
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Theory of mode locking with a slow saturable absorber
H. A. Haus · IEEE Journal of Quantum Electronics · 1975 · 497 citations
A theory of forced mode locking
H. A. Haus · IEEE Journal of Quantum Electronics · 1975 · 266 citations
On the linewidth enhancement factor α in semiconductor injection lasers
Kerry J. Vahala, Lily Chiu, S. Margalit et al. · Applied Physics Letters · 1983 · 158 citations