Publikation: Subpicosecond thin-disk laser oscillator with pulse energies of up to 25.9 microjoules by use of an active multipass geometry
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The pulse shaping dynamics of a diode-pumped laser oscillator with active multipass cell was studied experimentally and numerically. We demonstrate the generation of high energy subpicosecond pulses with a pulse energy of up to 25.9 mu J at a pulse duration of 928 fs directly from a thin-disk laser oscillator. These results are achieved by employing a selfimaging active multipass geometry operated in ambient atmosphere. Stable single pulse operation has been obtained with an average output power in excess of 76 W and at a repetition rate of 2.93 MHz. Self starting passive mode locking was accomplished using a semiconductor saturable absorber mirror. The experimental results are compared with numerical simulations, showing good agreement including the appearance of Kelly sidebands. Furthermore, a modified soliton-area theorem for approximating the pulse duration is presented.
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NEUHAUS, Jörg, Dominik BAUER, Jing ZHANG, Alexander KILLI, Jochen KLEINBAUER, Malte KUMKAR, Sascha WEILER, Mircea GUINA, Dirk H. SUTTER, Thomas DEKORSY, 2008. Subpicosecond thin-disk laser oscillator with pulse energies of up to 25.9 microjoules by use of an active multipass geometry. In: Optics Express. 2008, 16(25), pp. 20530-20539. Available under: doi: 10.1364/OE.16.020530BibTex
@article{Neuhaus2008Subpi-4747, year={2008}, doi={10.1364/OE.16.020530}, title={Subpicosecond thin-disk laser oscillator with pulse energies of up to 25.9 microjoules by use of an active multipass geometry}, number={25}, volume={16}, journal={Optics Express}, pages={20530--20539}, author={Neuhaus, Jörg and Bauer, Dominik and Zhang, Jing and Killi, Alexander and Kleinbauer, Jochen and Kumkar, Malte and Weiler, Sascha and Guina, Mircea and Sutter, Dirk H. and Dekorsy, Thomas} }
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