We present an overview of the cryo-amplifier concept and design utilized in the DiPOLE100 laser system built for use at the HiLASE Center, which has been successfully tested operating at an average power of 1kW. Following this we describe the alterations made to the design in the second generation system being constructed for high energy density (HED) experiments in the HED beamline at the European XFEL. These changes are predominantly geometric in nature, however also include improved mount design and improved control over the temporal shape of the output pulse. Finally, we comment on future plans for development of the DiPOLE laser amplifier architecture.
Thomas Butcher, Paul Mason, Saumyabrata Banerjee, Klaus Ertel, P. Jonathan Phillips, Jodie Smith, Mariastefania De Vido, Oleg Chekhlov, Martin Divoky, Jan Pilat, Gerd Priebe, Toma Toncian, Waseem Shaikh, Chris Hooker, Antonio Lucianetti, Cristina Hernandez-Gomez, Tomas Mocek, Chris Edwards, and John Collier, "A 100 J-level nanosecond DPSSL for high energy density experiments," Proc. SPIE 10238, High-Power, High-Energy, and High-Intensity Laser Technology III, 1023802 (Presented at SPIE Optics + Optoelectronics: April 26, 2017; Published: 11 May 2017); https://doi.org/10.1117/12.2265765.
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Study of self-shadowing effect as a simple means to realize nanostructured thin films and layers with special attentions to birefringent obliquely deposited thin films and photo-luminescent porous silicon