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Continuous wave stimulated Brillouin scattering in optical fibers: New results and applications for high power lasers

机译:连续波激发的布里渊在光纤中的散射:高功率激光器的新结果和应用

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In this paper we review of our recent results in different aspects of fundamentals and applications of continuous wave (CW) stimulated Brillouin scattering (SBS) in optical fibers. We show that with increasing pump strength the temporally stable component emerges from initially stochastic Stokes emission slightly above the SBS threshold to become the dominant contribution at higher pump powers. The effect is independent of fiber characteristics. These findings are shown to be a manifestation of spectral self-phase conjugation in SBS providing first experimental evidence of this phenomenon in optics. In application domain a considerable power scaling for the MOPA system comprising a CW Nd:YAG master oscillator, a quasi-CW diode pumped Nd:YAG slab power amplifier and a fiber based SBS phase conjugate mirror is reported. A twelve-pass amplifier configuration is employed to achieve high gain in a small length slab amplifier. Residual and pump induced optical inhomogenities in the slab are corrected by the fibre phase conjugator to achieve diffraction limited output beam quality. 300 W quasi-CW output power and a maximal attainable gain of~150 for the system are obtained. We also considered theoretically SBS in high power fiber amplifiers. We show that for an end-pumped rare-earth doped double-clad fiber the inhomogeneous distribution of temperature, which is caused by absorption of pump radiation, may result in total suppression of SBS even for output powers of CW single-frequency radiation well above 1000 W.
机译:在本文中,我们回顾了在光纤中连续波(CW)激发的布里渊散射(SBS)的基本原理和应用的不同方面的最新研究成果。我们表明,随着泵浦强度的提高,暂时稳定的斯托克斯排放源从略高于SBS阈值的时间稳定成分出现,成为更高泵浦功率的主要贡献。该效果与纤维特性无关。这些发现被证明是SBS中光谱自相位共轭的一种表现,为光学中的这种现象提供了第一个实验证据。在应用领域中,已经报道了MOPA系统的相当大的功率缩放比例,该系统包括CW Nd:YAG主振荡器,准CW二极管泵浦Nd:YAG平板功率放大器和基于光纤的SBS相共轭镜。采用十二通放大器配置可在小长度平板放大器中实现高增益。光纤相位共轭器校正了平板中残留和泵浦引起的光学不均匀性,以实现衍射受限的输出光束质量。系统获得300 W准CW输出功率和最大可达到的增益〜150。从理论上讲,我们还考虑了高功率光纤放大器中的SBS。我们表明,对于端抽稀土掺杂双包层光纤,由于泵浦辐射的吸收而引起的温度不均匀分布,即使对于连续单频辐射的输出功率远高于此,也可能完全抑制SBS。 1000瓦

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