Title :
Power Scaling of Single-Frequency Ytterbium-Doped Fiber Master-Oscillator Power-Amplifier Sources up to 500 W
Author :
Jeong, Yoonchan ; Nilsson, Johan ; Sahu, Jayanta K. ; Payne, David N. ; Horley, R. ; Hickey, L.M.B. ; Turner, P.W.
Author_Institution :
Univ. of Southampton, Southampton
Abstract :
We discuss continuous-wave single-frequency master- oscillator power-amplifier (MOPA) sources based on ytterbium- doped fibers (YDFs) with particular attention to their recent advances and our experimental results. This includes a 402-W plane-polarized MOPA source and a 511-W random-polarized MOPA source. In these MOPAs, the final-stage high-power amplifier operates with high efficiency of 70%-80%, and a high gain of over 20 dB in a near diffraction-limited beam. We report at least 7-dB enhancement of the stimulated Brillouin scattering (SBS) threshold for the 402-W polarization-maintaining (PM) YDF. In fact, we did not see any sign of SBS even at the highest output power. We eventually observed SBS appearance at around 500 W for the non-PM YDF. The observed SBS strengths were far weaker than expected in theory, unless we allowed for the Brillouin gain reduction from thermal Brillouin gain broadening induced by the quantum-defect heating.
Keywords :
laser beams; laser frequency stability; light polarisation; optical fibre amplifiers; stimulated Brillouin scattering; ytterbium; Brillouin gain reduction; plane-polarized MOPA; polarization-maintaining YDF; power 402 W; power 511 W; power scaling; quantum-defect heating; random-polarized MOPA; stimulated Brillouin scattering; thermal Brillouin gain broadening; ytterbium-doped fiber master-oscillator power-amplifier; Brillouin scattering; Fiber lasers; Laser theory; Optical amplifiers; Optical fiber polarization; Optical fiber theory; Optical fibers; Power amplifiers; Power generation; Power lasers; Brillouin scattering; Optical fiber amplifiers; Ytterbium; optical fiber lasers;
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
DOI :
10.1109/JSTQE.2007.896639