Publication | Closed Access
Infrared and self-frequency doubled laser action in Yb3+-doped LiNbO3:MgO
80
Citations
10
References
1999
Year
Optical MaterialsEngineeringLaser ScienceLaser PhysicsLaser ApplicationsLaser MaterialSuper-intense LasersHigh-power LasersShort-pulse LasersYb3+-doped Linbo3Optical PropertiesSolid-state LasersConcentric CavityPhotonicsLinbo3 Nonlinear CrystalOptical PumpingPhysicsUltrafast Laser PhysicsLaser DesignCritical Cavity AlignmentApplied PhysicsLaser-solid InteractionsFibre Amplifier
Stable continuous-wave laser action in the near-infrared and in the green spectral region has been obtained in a self-frequency doubling solid-state laser, the Yb3+:MgO:LiNbO3 nonlinear crystal. By pumping with a Ti:sapphire laser and using a nearly concentric cavity, laser action at 1.06 μm was achieved with an absorbed power threshold of 101 mW and efficiency around 47%. As much as 60 mW of self-frequency-doubled radiation at 530 nm was also obtained with absorbed pump powers of 800 mW in critical cavity alignment. Efficient laser action was also obtained in the near-infrared region under pumping with diode laser.
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