Demonstration of stable, long-term operation of a nanosecond pulsed DPSSL at 10 J, 100 Hz

Author:

De Vido MariastefaniaORCID,Quinn Gary1ORCID,Clarke Danielle1,McHugh Luke,Mason Paul,Spear Jacob,Smith Jodie M.,Divoky Martin2ORCID,Pilar Jan2,Denk Ondrej2,Butcher Thomas J.,Edwards Chris,Mocek Tomas2,Collier John L.

Affiliation:

1. Heriot-Watt University

2. Institute of Physics of the Czech Academy of Sciences

Abstract

We report on stable, long-term operation of a diode-pumped solid-state laser (DPSSL) amplifying 15 ns pulses at 1029.5 nm wavelength to 10 J energy at 100 Hz pulse rate, corresponding to 1 kW average power, with 25.4% optical-to-optical efficiency. The laser was operated at this level for over 45 minutes (∼3 · 105 shots) in two separate runs with a rms energy stability of 1%. The laser was also operated at 7 J, 100 Hz for 4 hours (1.44 · 106 shots) with a rms long-term energy stability of 1% and no need for user intervention. To the best of our knowledge, this is the first time that long-term reliable amplification of a kW-class high energy nanosecond pulsed DPSSL at 100 Hz has been demonstrated.

Funder

Engineering and Physical Sciences Research Council

Horizon 2020 Framework Programme

European Regional Development Fund

Publisher

Optica Publishing Group

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