Publication | Open Access
Nonequilibrium and thermal effects in mode-locked VECSELs
31
Citations
12
References
2014
Year
EngineeringLaser ScienceRecord Average PowerSuper-intense LasersKerr Lens ElementsOptical PropertiesOptical SolitonThermodynamicsUltrafast LasersFree Electron LaserPhotonicsPhysicsPulse DurationsBias Temperature InstabilityHeat TransferThermal EngineeringApplied PhysicsCondensed Matter PhysicsUltrafast OpticsMode-locked VecselsPerformance Characterization
Ultrafast femtosecond timescale dynamics in Vertical External Cavity Surface Emitting Lasers (VECSELs) have recently been employed to achieve record average power and duration mode-locked pulses by employing different types of saturable absorbers and Kerr Lens elements. Microscopic many-body dynamics are expected to dominate when attempting to push pulse durations below 100 fs. We present a preliminary microscopic simulation of ultrafast mode-locking in order to expose the role of hot carrier distributions in establishing ultrafast mode-locking.
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