115 W fiber laser with an all solid-structure and a large-mode-area multicore fiber

J Ji, S Raghuraman, X Huang, J Zang, D Ho, Y Zhou… - Optics letters, 2018 - opg.optica.org
J Ji, S Raghuraman, X Huang, J Zang, D Ho, Y Zhou, Y Benudiz, UB Ami, AA Ishaaya, S Yoo
Optics letters, 2018opg.optica.org
We investigate mode-area scaling by means of supermode operation in an all-solid
multicore fiber. To obtain a large-mode area (LMA), we designed and fabricated an active
double-clad multicore fiber, where each ytterbium-doped core is 19 μm in diameter and has
a numerical aperture of 0.067, comparable to the core of the largest available commercial
LMA fibers. The six large cores are stacked tightly in a ring structure to enable phase locking
of the core fields and supermode operation. The fiber laser performance was investigated in …
We investigate mode-area scaling by means of supermode operation in an all-solid multicore fiber. To obtain a large-mode area (LMA), we designed and fabricated an active double-clad multicore fiber, where each ytterbium-doped core is 19 μm in diameter and has a numerical aperture of 0.067, comparable to the core of the largest available commercial LMA fibers. The six large cores are stacked tightly in a ring structure to enable phase locking of the core fields and supermode operation. The fiber laser performance was investigated in a linear laser cavity with an external Talbot resonator for mode selection. The highest output power achieved was 115 W with an overall 61% slope efficiency corresponding to the pump power. The measured M^2 was 1.43 for the central lobe with nearly 70% of the total power.
opg.optica.org
以上显示的是最相近的搜索结果。 查看全部搜索结果