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162-W average power from a diode-pumped femtosecond Yb:YAG thin disk laser
200
Citations
13
References
2000
Year
Optical PumpingPhotonicsEngineeringLaser SciencePhysicsOptical AmplifierOptical PropertiesApplied PhysicsDiode-pumped Femtosecond YbLaser OscillatorSuper-intense LasersPassive Mode LockingPower-scalable ConceptHigh-power Lasers162-W Average PowerSolid-state LasersFiber LaserOptoelectronics
We demonstrate a power-scalable concept for high-power all-solid-state femtosecond lasers, based on passive mode locking of Yb:YAG thin disk lasers with semiconductor saturable-absorber mirrors. We obtained 16.2 W of average output power in pulses with 730-fs duration, 0.47-muJ pulse energy, and 560-kW peak power. This is to our knowledge the highest average power reported for a laser oscillator in the subpicosecond regime. Single-pass frequency doubling through a 5-mm-long lithium triborate crystal (LBO) yields 8-W average output power of 515-nm radiation.
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