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Analysis of the temporal and spectral output properties of a mode-locked and Q-switched laser oscillator with a nonlinear mirror based on stimulated Brillouin scattering

机译:基于受激布里渊散射的带非线性镜的锁模调Q激光振荡器的时间和光谱输出特性分析

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The emission dynamics of a mode-locked laser oscillator with a nonlinear mirror based on stimulated Brillouin scattering (SBS) has been investigated with regard to its spectrum and to its intensity distribution. The investigation was carried out experimentally as well as by numerical simulations. The laser yields trains of pulses with measured durations of 410 ps and energies of the single pulse of up to 2 mJ. Two theoretical models describing the complex emission dynamics of a mode-locked SBS-laser oscillator are introduced. The first model consists of spectrally resolved laser rate equations and thus describes the mode locking in the frequency domain by the superposition of the longitudinal resonator modes. The SBS-Q-switch is incorporated by a phenomenological description of the time dependent SBS reflectivity. Numerical simulations based on this model yield the evolution of a few 100 longitudinal laser modes and the corresponding intensity distribution during the course of a Q-switch pulse with 10-ps resolution. The influences of the different components on the spectrum and thus on the pulse duration will be discussed. The second model describes all occurring dynamics in the time domain providing easy access to the study of misalignment on the output dynamics. Results of numerical simulations of both models and measurement results are compared.
机译:已经研究了基于受激布里渊散射(SBS)的带有非线性镜的锁模激光振荡器的发射动力学,涉及其光谱和强度分布。该研究是通过实验以及数值模拟进行的。激光产生的脉冲串的实测持续时间为410 ps,单个脉冲的能量高达2 mJ。介绍了两种描述锁模SBS激光振荡器的复杂发射动力学的理论模型。第一个模型由光谱解析的激光速率方程组成,因此通过纵向谐振器模式的叠加来描述在频域中的模式锁定。 SBS-Q开关通过对时间相关的SBS反射率的现象学描述而合并。基于此模型的数值模拟产生了10个ps分辨率的Q开关脉冲过程中,数百个纵向激光​​模式的演变以及相应的强度分布。将讨论不同成分对频谱的影响,从而对脉冲持续时间的影响。第二个模型描述了时域中所有正在发生的动力学,从而可以轻松地研究输出动力学的未对准情况。比较两个模型的数值模拟结果和测量结果。

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