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Fundamental and Subharmonic Hybrid Mode-Locking of a High-Power (220 mW) Monolithic Semiconductor Laser
23
Citations
9
References
2008
Year
Subharmonic Hybrid Mode-lockingPhotonicsElectrical EngineeringMonolithic Semiconductor LaserStable Optical PulsesEngineeringLaser ScienceOptical PumpingOptical PropertiesApplied PhysicsLaser Applications1.55- Mum WavelengthSemiconductor Diode LaserHigh-power LasersFiber LaserOptical AmplifierElectro-optics DeviceOptoelectronics
We report on the generation of stable optical pulses at 1.55- mum wavelength via fundamental and subharmonic hybrid mode-locking of a high-power electrically pumped semiconductor diode laser with a slab-coupled optical waveguide structure. The highest average power measured in mode-locked operation was 220 mW. This is the highest power reported for a hybrid mode-locked monolithic semiconductor laser. We also measure the phase (or timing) noise during fundamental and subharmonic operation and our measurements show good agreement with theory.
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