DocumentCode :
1763049
Title :
Yb-Fiber-Laser-Pumped Ultrafast Frequency Conversion Sources From the Mid-Infrared to the Ultraviolet
Author :
Ebrahim-Zadeh, Majid ; Chaitanya Kumar, S.
Author_Institution :
Inst. de Cienc. Fotoniques, Castelldefels, Spain
Volume :
20
Issue :
5
fYear :
2014
fDate :
Sept.-Oct. 2014
Firstpage :
624
Lastpage :
642
Abstract :
We describe the development of versatile, practical, and high-power ultrafast optical sources based on second-order nonlinear frequency conversion in bulk materials pumped by the mode-locked Yb-fiber laser at 1064 nm, and covering spectral regions from the near- to mid-infrared (mid-IR) to the visible and ultraviolet (UV). By exploiting synchronously-pumped optical parametric oscillators (SPOPOs) based on quasi-phase-matched nonlinear materials of MgO:PPLN and MgO:sPPLT, in combination with internal and external single-pass harmonic generation in birefringent crystals of BiB3O6 and β-BaB2O4, we have generated tunable picosecond pulses in spectral regions from above ~4 μm in the mid-IR, into the visible, and down to 317 nm in the UV. The demonstrated sources can deliver average output powers of up to 11.7 W in the near- to mid-IR, 3.5 W in the visible, and 30 mW in the UV, in picosecond pulses at ~80 MHz repetition rate, with high passive stability, excellent output characteristics, and the potential for further power scaling with increased fiber laser pump power. The described sources represent an effective approach for the extension of fiber laser technology across the entire wavelength range from the UV to mid-IR spectrum, and ultimately the THz spectral range.
Keywords :
barium compounds; birefringence; bismuth compounds; fibre lasers; laser mode locking; laser stability; lithium compounds; magnesium compounds; optical harmonic generation; optical parametric oscillators; optical phase matching; optical pulse generation; optical pumping; ytterbium; BaB2O4; BiB3O6; LiNbO3:MgO; LiTaO3:MgO; THz spectral range; Yb-fiber-laser-pumped ultrafast frequency conversion sources; birefringent crystals; bulk materials; external single-pass harmonic generation; fiber laser pump power; high-power ultrafast optical sources; internal single-pass harmonic generation; mode-locked Yb-fiber laser; near-infrared spectral region; output characteristics; output powers; passive stability; picosecond pulses; power scaling; quasiphase-matched nonlinear materials; repetition rate; second-order nonlinear frequency conversion; synchronously-pumped optical parametric oscillators; tunable picosecond pulse generation; ultraviolet spectral region; visible spectral region; wavelength 1064 nm; Crystals; Frequency conversion; Laser excitation; Laser mode locking; Laser stability; Power generation; Pump lasers; Nonlinear optical devices; nonlinear materials; optical parametric oscillators; second harmonic generation; ultrafast sources;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/JSTQE.2014.2319590
Filename :
6808408
Link To Document :
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