23 mJ high-power fiber CPA system using electro-optically controlled divided-pulse amplification
Optics
2021-01-26 v1
Abstract
The pulse-energy scaling technique electro-optically controlled divided-pulse amplification is implemented in a high-power ultrafast fiber laser system based on coherent beam combination. A fiber-integrated front end and a multi-pass cell based back end allow for a small footprint and a modular implementation. Bursts of 8 pulses are amplified parallel in up to 12 ytterbium-doped large-pitch fiber amplifiers. Subsequent spatio-temporal coherent combination of the 96 total amplified pulse replicas to a single pulse results in a pulse energy of 23 mJ at an average power of 674 W, compressible to a pulse duration of 235 fs. To the best of our knowledge, this is the highest pulse energy ever accomplished with a fiber CPA system.
Cite
@article{arxiv.2101.09686,
title = {23 mJ high-power fiber CPA system using electro-optically controlled divided-pulse amplification},
author = {Henning Stark and Joachim Buldt and Michael Müller and Arno Klenke and Andreas Tünnermann and Jens Limpert},
journal= {arXiv preprint arXiv:2101.09686},
year = {2021}
}