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Modeling of visible-extended supercontinuum generation from a tapered Ytterbium-doped fiber amplifier

机译:锥形YTTerbium掺杂光纤放大器的可见光超连续的建模

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Supercontinuum (SC) generation directly from a nonlinear fiber amplifier, especially from a nonlinear ytterbium-doped fiber amplifier, attracts more and more attention due to its all-fiber structure, high optical to optical conversion efficiency, and high average output power potential. However, the modeling of SC generation from a nonlinear fiber amplifier has been rarely reported. In this paper, the modeling of a tapered ytterbium-doped fiber amplifier for visible to infrared SC generation is proposed based on the combination of the laser rate equations and the generalized non-linear Schrodinger equation (GNLSE). Ytterbium-doped fiber amplifier generally cannot generate visible extended SC due to its pumping wavelength and zero-dispersion wavelength. However, appropriate tapering and four-wave mixing makes the visible extended SC generation from an ytterbium-doped fiber amplifier possible. Tapering makes the zero-dispersion wavelength of the ytterbium-doped fiber shift to the short wavelength and increases the dispersion matching. Four-wave mixing plays an important role in the visible spectrum generation. The influence of pulse width and pump power on the SC generation is calculated and analyzed. The simulation results imply that it is promising and possible to fabricate a visible-to-infrared SC with low pump power and flat spectrum by using the tapered ytterbium-doped fiber amplifier scheme as long as the related parameters are well-selected.
机译:SuperContinuum(SC)直接从非线性光纤放大器产生,尤其是非线性YTTerbium掺杂的光纤放大器,由于其全纤维结构,高光学转换效率和高平均输出功率电位,吸引越来越多的关注。然而,已经很少报道了来自非线性光纤放大器的SC产生的建模。在本文中,基于激光速率方程和广义非线性施罗德格方程(GNLSE)的组合,提出了一种用于红外SC的锥形YTterbium掺杂光纤放大器的建模。由于其泵浦波长和零色散波长,掺杂镱掺杂的纤维放大器通常不能产生可见光的SC。然而,适当的锥形和四波混合使得可见的延伸SC从YTterbium掺杂的纤维放大器产生。逐渐变细使yTterbium掺杂纤维的零色散波长转移到短波长并增加色散匹配。四波混合在可见光谱生成中起着重要作用。计算和分析脉冲宽度和泵电击对SC生成的影响。仿真结果意味着它具有很强的且可以通过使用锥形的ytterbium掺杂的光纤放大器方案来制造具有低泵功率和平坦光谱的可见光的SC,只要选择相关的参数。

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