| Literature DB >> 26367612 |
Saumyabrata Banerjee, Klaus Ertel, Paul D Mason, P Jonathan Phillips, Mariastefania De Vido, Jodie M Smith, Thomas J Butcher, Cristina Hernandez-Gomez, R Justin S Greenhalgh, John L Collier.
Abstract
The Diode Pumped Optical Laser for Experiments (DiPOLE) project at the Central Laser Facility aims to develop a scalable, efficient high pulse energy diode pumped laser amplifier system based on cryogenic gas cooled, multi-slab ceramic Yb:YAG technology. We present recent results obtained from a scaled down prototype laser system designed for operation at 10 Hz pulse repetition rate. At 140 K, the system generated 10.8 J of energy in a 10 ns pulse at 1029.5 nm when pumped by 48 J of diode energy at 940 nm, corresponding to an optical to optical conversion efficiency of 22.5%. To our knowledge, this represents the highest pulse energy obtained from a cryo cooled Yb laser to date and the highest efficiency achieved by a multi-Joule diode pumped solid state laser system. Additionally, we demonstrated shot-to-shot energy stability of 0.85% rms for the system operated at 7 J, 10 Hz during several runs lasting up to 6 hours, with more than 50 hours in total. We also demonstrated pulse shaping capability and report on beam, wavefront and focal spot quality.Entities:
Year: 2015 PMID: 26367612 DOI: 10.1364/OE.23.019542
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894