Analysis of Energy Transfer among Stokes Components in Raman Fiber Lasers

L. Cruz-May, Efraín Mejía Beltrán, O. Benavides, Rafael Sánchez Lara
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Abstract

This work presents a methodology to estimate the pumping power required for the first Stokes to reach its maximum stored energy level, before it generates the next Stokes. These estimates are achieved by experimentally measuring the critical power and the relationship between the pumping power (PP0) and the small signal of the stimulated Raman spread (PF0). For our study we used 1 km of 1060-XP fiber, experimentally obtaining Pcr = 6.693 W, PF0/PP0 = 6.759x10−6. With these experimental data, the pump power required for the first Stokes to reach its maximum stored energy level was 13.39 W, and the stored energy in the first Stokes was 9.88 W. It is important to note that the Raman threshold ln(PP0/PF0) = 11.9 is smaller than the initially reported ∼16.
拉曼光纤激光器中Stokes组分间能量传递分析
这项工作提出了一种方法来估计在产生下一个斯托克斯之前,第一个斯托克斯达到其最大存储能量水平所需的泵送功率。这些估计是通过实验测量临界功率和泵浦功率(PP0)与受激拉曼扩散(PF0)的小信号之间的关系来实现的。在我们的研究中,我们使用了1公里的1060-XP光纤,实验得到Pcr = 6.693 W, PF0/PP0 = 6.759x10−6。根据这些实验数据,第一斯托克斯达到其最大存储能级所需的泵功率为13.39 W,第一斯托克斯的存储能量为9.88 W。值得注意的是,拉曼阈值ln(PP0/PF0) = 11.9小于最初报道的~ 16。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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