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SBS management in Yb-fiber-amplifiers using multimode seeds and pulse-shaping

机译:使用多模种子和脉冲整形的Yb光纤放大器中的SBS管理

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摘要

We present a comprehensive analysis of the technique of Longitudinal-Mode-Filling (LMF) to reduce Stimulated Brillouin Scattering (SBS) limitations in Ytterbium Doped Fibre Amplifiers (YDFA), for the generation of nanosecond, temporally shaped pulses. A basic Master- Oscillator-Power-Amplifier (MOPA) system, comprising an output YDFA with 10μm-core active fibre, is experienced for benchmarking purposes. Input pulse-shaping is operated thanks to direct current modulation in highly multimode laser-diode seeds, either based on the use of Distributed Feed-Back (DFB) or of a Fibre Bragg Grating (FBG). These seeds enable wavelength control. We verify the effectiveness of the combination of LMF, with appropriate mode spacing, in combination with natural chirp effects from the seed to control the SBS threshold in a broad range of output energies, from a few to some tens of μJ. These variations are discussed versus all the parameters of the laser system. In accordance with the proposal of a couple of basic principles and with the addition of gain saturation effects along the active fibre, we develop a full-vectorial numerical model. Fine fits between experimental results and theoretical expectations are demonstrated. The only limitation of the technique arises from broadband beating noise, which is analysed thanks to a simplified, but fully representative description to discuss the signal-to-noise ratio of the amplified pulses. This provides efficient tools for application to the design of robust and cost-effective MOPAs, aiming to the generation of finely shaped and energetic nanosecond pulses without the need for any additional electro-optics.
机译:我们对纵向模式填充(LMF)的技术进行了全面分析,以减少掺Y光纤放大器(YDFA)中受激布里渊散射(SBS)的局限性,以产生纳秒级的时间整形脉冲。对于基准测试,经验丰富的基本主振荡器-功率放大器(MOPA)系统包括一个输出YDFA和10μm芯有源光纤。通过使用分布式反馈(DFB)或光纤布拉格光栅(FBG)在高度多模的激光二极管种子中进行直流调制,可以操作输入脉冲整形。这些种子可以控制波长。我们验证了具有适当模式间距的LMF组合的有效性,并结合了来自种子的自然chi效应,以控制从几到几十μJ的大范围输出能量中的SBS阈值。讨论了这些变化与激光系统的所有参数。根据一些基本原理的建议,以及沿有源光纤的增益饱和效应,我们开发了一个全矢量数值模型。实验结果和理论预期值之间很好地吻合。该技术的唯一局限性来自宽带的拍打噪声,这要归功于简化的,但完全具有代表性的描述,以讨论放大脉冲的信噪比。这提供了有效的工具,可用于设计鲁棒且具有成本效益的MOPA,旨在生成精细成形且高能的纳秒脉冲,而无需任何其他电光。

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