A pulsed, diode-laser-pumped Nd:YAG master oscillator power amplifier (MOPA) in rod geometry, frequency stabilized with a modified Pound-Drever-Hall scheme is presented. The apparatus delivers 33-ns pulses with a maximum pulse energy of 0.5 J at 1064 nm. The system was set up in two different configurations for repetition rates of 100 or 250 Hz. The beam quality was measured to be 1.5 times the diffraction limit at a pulse energy of 405 mJ and a repetition rate of 100 Hz. At 250 Hz with the same pulse energy, the M2 was better than 2.1. The radiation is frequency converted with an efficiency of 50% to 532 nm. This MOPA system will be the pump laser of transmitters for a variety of high-end, scanning lidar systems.
A Nd:YAG laser oscillator Q-switched and mode locked via a nonlinear
mirror based on stimulated Brillouin scattering (SBS) and aided by an
acousto optical modulator (AOM) has been realised. A rate equation model
and a round trip model are used to describe the longitudinal mode
dynamics. Parameter variations of the nonlinear SBS mirror and the loss
modulating AOM in the resonator are investigated with regard to their
effect on the pulse duration and spectra of the pulses.
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