TY - JOUR
T1 - Chip-scale, high power microstructure fiber laser
AU - Peyghambarian, Nasser
AU - Schülzgen, Axel
AU - Mansuripur, Masud
AU - Moloney, Jerome V.
AU - Qiu, Tiequn
AU - Kaneda, Yushi
AU - Polynkin, Pavel
AU - Li, Li
AU - Wu, Jianfeng
AU - Polynkin, Alex
AU - Temyanko, Valery L.
AU - Mafi, Arash
AU - Jiang, Shibin
AU - Spiegelberg, Christine
AU - Chavez, Arturo
AU - Geng, Jihong
AU - Luo, Tao
PY - 2005
Y1 - 2005
N2 - Compact, robust, high power fiber lasers have been demonstrated. In fiber lasers of only a few cm length we obtained up to 10 W of cw output power, diffraction limited beam profiles at 4 W cw operation, 1.6 W output with single frequency operation, and more than 150 mW output with a spectral linewidth of a few kHz. The potential of active microstructured fibers for further improvements in fiber laser performance has been shown. We also demonstrated Q-switching and mode-locking of these compact fiber lasers.
AB - Compact, robust, high power fiber lasers have been demonstrated. In fiber lasers of only a few cm length we obtained up to 10 W of cw output power, diffraction limited beam profiles at 4 W cw operation, 1.6 W output with single frequency operation, and more than 150 mW output with a spectral linewidth of a few kHz. The potential of active microstructured fibers for further improvements in fiber laser performance has been shown. We also demonstrated Q-switching and mode-locking of these compact fiber lasers.
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U2 - 10.1557/proc-883-ff2.1
DO - 10.1557/proc-883-ff2.1
M3 - Conference article
SN - 0272-9172
VL - 883
SP - 65
EP - 70
JO - Materials Research Society Symposium Proceedings
JF - Materials Research Society Symposium Proceedings
M1 - FF2.1
T2 - 2005 Materials Research Society Spring Meeting
Y2 - 28 March 2005 through 31 March 2005
ER -