Title :
High Repetition Rate Gigawatt Peak Power Fiber Laser Systems: Challenges, Design, and Experiment
Author :
Limpert, Jens ; Röser, Fabian ; Schimpf, Damian N. ; Seise, Enrico ; Eidam, Tino ; Hädrich, Steffen ; Rothhardt, Jan ; Misas, César Jauregui ; Tünnermann, Andreas
Author_Institution :
Inst. of Appl. Phys., Friedrich Schiller Univ. Jena, Jena
Abstract :
We review the main challenges and give design guidelines for high-peak-power high-average-power fiber-based chirped-pulse amplification (CPA) systems. It is clearly pointed out that the lowest order fiber nonlinearity (NL), namely the self-phase modulation, limits the scalability of high-energy ultrashort pulse fiber amplifiers. Therefore, a distinguished difference arises between the consequences of accumulated nonlinear phase originating from the pulse envelope and initial weak modulations, resulting in a strong recommendation to operate an amplification system as linearly as possible in order to generate high-contrast pulses. Low-NL rare-earth-doped fibers, such as the recently available designs of photonic crystal fibers, are the key element for successful peak power scaling in fiber laser systems. In this paper, we present a detailed analysis and optimization of the extraction characteristics in connection with the accumulated nonlinear phase in such extreme fiber dimensions. Consequently, millijoule pulse energy femtosecond pulses at repetition rates in the 100 kHz range have already been demonstrated experimentally in a Yb-fiber-based CPA system that has even further scaling potential.
Keywords :
chirp modulation; holey fibres; laser beams; optical design techniques; optical fibre amplifiers; optical materials; optical pulse generation; photonic crystals; self-phase modulation; ytterbium; JkJk:Yb; Yb-fiber-based CPA system; chirped-pulse amplification system; fibre extraction characteristics; nonlinear fibre optics; optical amplification system; optical design guidelines; photonic crystal fibers; power fiber laser system; rare-earth-doped fibers; self-phase modulation; ultrashort pulse fiber amplifiers; Chirp modulation; Fiber lasers; Guidelines; Optical design; Optical pulse generation; Phase modulation; Power lasers; Pulse amplifiers; Pulse modulation; Scalability; Chirped-pulse amplification (CPA); fiber laser and amplifiers; microstructured fibers; nonlinear fiber optics; ultrafast optics;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2008.2010244