U
Uwe Griebner
Researcher at Max Planck Society
Publications - 497
Citations - 9325
Uwe Griebner is an academic researcher from Max Planck Society. The author has contributed to research in topics: Laser & Slope efficiency. The author has an hindex of 49, co-authored 469 publications receiving 8403 citations.
Papers
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Journal ArticleDOI
Passive mode-locking of acentric Yb-doped borate crystals
Valentin Petrov,Xavier Mateos,A. Schmidt,Simon Rivier,Uwe Griebner,Han Zhang,Jiyang Wang,Jing Li,Junhai Liu +8 more
TL;DR: In this article, the authors studied the performance of self-frequency doubling Yb:YAB and Yb-YCOB with a saturable absorber mirror at the fundamental wavelength with diode pumping.
Journal ArticleDOI
Exciton resonance tuning for the generation of subpicosecond pulses from a mode-locked semiconductor disk laser
TL;DR: In this paper, the spectral tuning of the exciton resonance of a surface quantum well saturable absorber mirror was investigated for the generation of sub-picosecond pulses, employing an optically pumped semiconductor disk laser in the 1μm spectral range.
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Efficient thin-disk Tm-laser operation based on Tm:KLu(WO4)2/KLu(WO4)2 epitaxies.
Sergei Vatnik,I. A. Vedin,Martha Segura,Xavier Mateos,Maria Cinta Pujol,Joan J. Carvajal,Magdalena Aguiló,Francesc Díaz,Valentin Petrov,Uwe Griebner +9 more
TL;DR: A diode-pumped thin-disk laser based on Tm:KLu(WO4)2/KLu-2 epitaxies is realized and the emission is in the 1850-1945 nm spectral range for Tm-doping between 5 and 15 at.
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Fluorite-type Tm3+:KY3F10: A promising crystal for watt-level lasers at ∼1.9 μm
Mengting Chen,Mengting Chen,Pavel Loiko,Josep Maria Serres,Stefano Veronesi,Mauro Tonelli,Magdalena Aguiló,Francesc Díaz,Sun Yung Choi,Ji Eun Bae,Fabian Rotermund,Shibo Dai,Zhenqiang Chen,Uwe Griebner,Valentin Petrov,Xavier Mateos +15 more
TL;DR: In this article, the Tm3+-doped cubic potassium yttrium fluoride, KY3F10, is a promising laser crystal for efficient watt-level lasers at ∼1.9μm because of the relatively easy crystal growth by the Czochralski method.
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High-energy multi-kilohertz Ho-doped regenerative amplifiers around 2 µm.
TL;DR: A high-gain, cw-pumped regenerative amplifier which is based on Ho-doped crystals and seeded by a versatile broadband source emitting between 2050 and 2100 nm and chosen to operate in a tunable single-energy regime without instabilities is reported.