Applied Optics · 2015 · 13 citations · 20 references
Short-pulse LasersPhotonicsFundamental Ring LaserSingle-frequency LaserEngineeringLaser SciencePhysicsOptical PumpingApplied PhysicsLaser ApplicationsLaser MaterialHigh-power 888Nm NdSuper-intense LasersSecond HarmonicW Injection-locked 1342High-power LasersOptical Amplifier
We demonstrate a continuous wave single-frequency laser at 671.1 nm based on a high-power 888 nm pumped Nd:YVO4 ring laser at 1342.2 nm. Unidirectional operation of the fundamental ring laser is achieved with the injection-locking technique. A Nd:YVO4 microchip laser serves as the injecting seed source, providing a tunable single-frequency power of up to 40 mW. The ring laser emits a single-frequency power of 17.2 W with a Gaussian beam profile and a beam propagation factor of M2<1.1. A 60-mm-long periodically poled MgO-doped LiNbO3 crystal is used to generate the second harmonic in a single-pass scheme. Up to 5.7 W at 671.1 nm with a Gaussian shaped beam profile and a beam propagation factor of M2<1.2 are obtained, which is approximately twice the power of previously reported lasers. This work opens possibilities in cold atoms experiments with lithium, allowing the use of larger ensembles in magneto-optical traps or higher diffraction orders in atomic beam interferometers.
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Laser phase and frequency stabilization using an optical resonator
R. W. P. Drever, J. L. Hall, Frank V. Kowalski et al. · Applied Physics B · 1983 · 3.7K citations
Parametric Interaction of Focused Gaussian Light Beams
G. D. Boyd, D. A. Kleinman · Journal of Applied Physics · 1968 · 1.6K citations
Photonics, Engineering, Wave Optic +10