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Dispersion management for a sub-10-fs, 10 TW optical parametric chirped-pulse amplifier
Authors:Tavella Franz  Nomura Yutaka  Veisz Laszlo  Pervak Vladimir  Marcinkevicius Andrius  Krausz Ferenc
Affiliation:Max-Planck-Institut für Quantenoptik, Hans-Kopfermann-Strasse 1, 85748 Garching, Germany. franz. tavella@mpq.mpg.de
Abstract:
We report the amplification of three-cycle, 8.5 fs optical pulses in a near-infrared noncollinear optical parametric chirped-pulse amplifier (OPCPA) up to energies of 80 mJ. Improved dispersion management in the amplifier by means of a combination of reflection grisms and a chirped-mirror stretcher allowed us to recompress the amplified pulses to within 6% of their Fourier limit. The novel ultrabroad, ultraprecise dispersion control technology presented in this work opens the way to scaling multiterawatt technology to even shorter pulses by optimizing the OPCPA bandwidth.
Keywords:
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