Publication | Open Access
Performance enhancement of sub-nanosecond diode-pumped passively Q-switched Yb:YAG microchip laser with diamond surface cooling
15
Citations
31
References
2012
Year
EngineeringLaser ScienceLaser ApplicationsLaser PhysicsLaser MaterialSuper-intense LasersHigh-power LasersOptical AmplifierPulse PowerYag LaserOptical PumpingPhotonicsElectrical EngineeringPulse GenerationPerformance EnhancementDiamond CoolingLaser DesignMicroelectronicsQ-switched YbApplied PhysicsDiamond Surface CoolingDiamond Surface
We experimentally confirm that diamond surface cooling can significantly enhance the output performance of a sub-nanosecond diode-end-pumped passively Q-switched Yb:YAG laser. It is found that the pulse energy obtained with diamond cooling is approximately 1.5 times greater than that obtained without diamond cooling, where a Cr(4+):YAG absorber with the initial transmission of 84% is employed. Furthermore, the standard deviation of the pulse amplitude peak-to-peak fluctuation is found to be approximately 3 times lower than that measured without diamond cooling. Under a pump power of 3.9 W, the passively Q-switched Yb:YAG laser can generate a pulse train of 3.3 kHz repetition rate with a pulse energy of 287 μJ and with a pulse width of 650 ps.
| Year | Citations | |
|---|---|---|
Page 1
Page 1