Opt Express. 2023 Feb 27;31(5):8610-8621. doi: 10.1364/OE.483307.
We propose a novel (to our knowledge) driving scheme to suppress the stimulated Brillouin scattering (SBS) effect in master oscillator power amplification (MOPA) systems based on an external high-order phase modulation. Since seed sources with the linear chirp can uniformly broaden the SBS gain spectrum with a high SBS threshold, a chirp-like signal was designed by applying further editing and processing to the piecewise parabolic signal. Compared with the traditional piecewise parabolic signal, the chirp-like signal has similar linear chirp characteristics and can reduce the driving power and sampling rate requirements, enabling more efficient spectral spreading. The SBS threshold model is constructed theoretically based on the three-wave coupling equation. The spectrum modulated by the chirp-like signal is compared with the flat-top and Gaussian spectra in terms of the SBS threshold and the bandwidth-distribution normalized threshold, and a considerable improvement is demonstrated. Meanwhile, the experimental validation is carried out in a watt-class amplifier based on the MOPA structure. At a 3 dB bandwidth of ∼10 GHz, the SBS threshold of the seed source modulated by the chirp-like signal is improved by 35% compared to the flat-top spectrum and 18% compared to the Gaussian spectrum, respectively, and the normalized threshold is also the highest among them. Our study shows that the SBS suppression effect is not only related to the power distribution of the spectrum but also can be improved by the time domain design, which provides a new idea for analyzing and improving the SBS threshold of narrow-linewidth fiber lasers.
我们提出了一种新颖的(据我们所知)基于外部高阶相位调制的主振荡器功率放大(MOPA)系统中抑制受激布里渊散射(SBS)效应的驱动方案。由于具有线性啁啾的种子源可以均匀地展宽 SBS 增益谱并具有较高的 SBS 阈值,因此通过对分段抛物信号进行进一步的编辑和处理,设计出了啁啾信号。与传统的分段抛物信号相比,啁啾信号具有相似的线性啁啾特性,可以降低驱动功率和采样率要求,从而实现更有效的光谱展宽。基于三波耦合方程,从理论上构建了 SBS 阈值模型。从 SBS 阈值和带宽分布归一化阈值两个方面,将啁啾信号调制的光谱与平顶和高斯光谱进行了比较,证明了其具有相当大的优势。同时,在基于 MOPA 结构的瓦级放大器中进行了实验验证。在 3dB 带宽约为 10GHz 的情况下,与平顶光谱相比,啁啾信号调制的种子源的 SBS 阈值提高了 35%,与高斯光谱相比提高了 18%,并且归一化阈值也是三者中最高的。我们的研究表明,SBS 抑制效果不仅与光谱的功率分布有关,还可以通过时域设计来提高,这为分析和改善窄线宽光纤激光器的 SBS 阈值提供了新的思路。