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Optically switched erbium fibre laser using a tunable fibre-Bragg grating

机译:使用可调光纤布拉格光栅的光开关光纤激光器

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The ability to tune the Bragg wavelength of a fibre-Bragg grating (FBG) in an all-fibre laser can offer added functionality such as laser wavelength tunability, polarization selectivity, and Q-switching. Compared to current techniques which rely on mechanically straining the FBG to achieve Bragg-wavelength tunability, an all-optical technique for tuning an FBG offers potentially faster switching speeds and a more robust and simple cavity. All-optical tuning of the Bragg wavelength of an FBG has been demonstrated previously by resonant optical pumping; however this technique has only been applied to passive systems for switching applications. In this work, we have further investigated this optical-tuning process, experimentally identifying three time-scale regimes, and optimised it for application to active systems. Furthermore, we constructed an erbium all-fibre laser cavity consisting of an output-coupler FBG and an optically-tunable, high-reflector FBG. The cavity pumping and the optical tuning of the FBG were kept independent. By repetitively tuning the high-reflector FBG on- and off-resonance with the output-coupler FBG, we actively Q-switched the erbium fibre laser at repetition rates up to 35 kHz, limited only by our diode driver. We show that grating tuning at >300 kHz is possible with the existing embodiment, and discuss further potential to operate at MHz rates.
机译:在全光纤激光器中调谐光纤布拉格光栅(FBG)的布拉格波长的能力可以提供附加功能,例如激光器波长可调性,偏振选择性和Q开关。与当前依靠机械应变FBG来实现布拉格波长可调谐性的技术相比,用于调谐FBG的全光技术可提供更快的开关速度以及更坚固耐用的腔体。 FBG的布拉格波长的全光调谐先前已通过谐振光泵浦得到了证明;然而,该技术仅被应用于用于开关应用的无源系统。在这项工作中,我们进一步研究了这种光学调谐过程,通过实验确定了三个时标范围,并对其进行了优化以应用于有源系统。此外,我们构造了一个由输出耦合器FBG和光学可调的高反射器FBG组成的全光纤腔。腔泵浦和FBG的光学调谐保持独立。通过与输出耦合器FBG反复调谐高反射镜FBG的开和关谐振,我们以高达35 kHz的重复频率主动调Q了fiber光纤激光器,仅受二极管驱动器限制。我们表明,在现有实施例中,> 300 kHz的光栅调谐是可能的,并讨论了以MHz速率工作的进一步潜力。

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