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Thermo-optic behaviour of intrinsically single-mode low-numerical aperture (NA) ytterbium-doped fibre

机译:本质单模低数值孔径(NA)镱掺杂纤维的热视光度

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A simplified model based on the finite-element method is proposed to study the thermo-optic behavior in high-power fiber amplifiers. It is shown that thermally induced refractive index change results in a thermal lens effect and ultimately leads to multimode behavior even in an intrinsically single-mode fiber. Besides, experimental investigations were carried out to characterize the thermo-optic behavior of an intrinsically single-mode large mode area 20/400 ytterbium-doped fiber with core numerical aperture (NA) similar to 0.04 in an all-fiber amplifier. Output power up to 1.68 kW was achieved with a deterioration of beam quality from M-2 < 1.1 to 1.7. It is explained that due to the uneven distribution of axial heat load, an intrinsically single-mode fiber gradually turns into a combination of a multi-mode fiber and a single-mode fiber with the growing heat load and then the leakage core modes trigger transverse mode instability. Moreover, a near diffraction-limited output power of 1.35 kW from an all-fiberized low-NA fiber amplifier is obtained.
机译:提出了一种基于有限元方法的简化模型,研究了高功率光纤放大器中的热视光度。结果表明,即使在本质上单模光纤中,热诱导的折射率变化导致热透镜效应,最终导致多模行为。此外,进行了实验研究,以表征本质上单模大型区域20/400 YTterbium掺杂纤维的热光学行为,其核心数值孔径(NA)在全光纤放大器中的0.04中。通过M-2 <1.1至1.7的光束质量劣化实现高达1.68 kW的输出电源。据解释,由于轴向热负荷的不均匀分布,本质上单模纤维逐渐变成多模光纤和单模光纤的组合,具有生长的热负荷,然后泄漏芯模式触发横向模式不稳定。此外,获得了来自全纤维化的低NA光纤放大器1.35kW的近衍射限制功率。

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