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Spectral combining of pulsed fiber lasers: scaling considerations

机译:脉冲光纤激光器的光谱组合:缩放考虑

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摘要

We show spectral combination of pulsed fiber laser systems for the first time to our knowledge. In this proof of principle experiment, two directly modulated wavelength-stabilized tunable external cavity diode lasers (ECDL) serve as independent seed sources. Each signal is amplified in a two stage ytterbium-doped fiber amplifier. The spatial overlap is created using a transmission grating with a combining efficiency as high as 92 %. No beam quality degradation has been observed for the combined beam compared to a single emission. An electronic delay is used to adjust the temporal overlap of the pulses from the spatially separated amplifier setups. The presented approach offers an enormous scaling potential of pulsed fiber laser systems, which are generally limited by nonlinear effects or fiber damage. We show that the huge gain bandwidth of Yb-doped fiber amplifiers and the high diffraction efficiency of dielectric reflection gratings in this wavelength range yield potential for a combination of up to 50 channels. For state-of-the-art ns-amplifier systems > 100 MW of peak power, > 100 mJ of pulse energy and average powers of > 10 kW seem feasible.
机译:据我们所知,我们首次展示了脉冲光纤激光系统的光谱组合。在此原理验证实验中,两个直接调制的波长稳定的可调外腔二极管激光器(ECDL)作为独立的种子源。每个信号在两级掺fiber光纤放大器中放大。使用具有高达92%的合成效率的透射光栅创建空间重叠。与单次发射相比,没有观察到组合光束的光束质量下降。电子延迟器用于调整来自空间分离的放大器设置的脉冲的时间重叠。所提出的方法提供了脉冲光纤激光器系统的巨大缩放潜力,通常受到非线性效应或光纤损坏的限制。我们表明,掺Y光纤放大器的巨大增益带宽和介电反射光栅在此波长范围内的高衍射效率可为多达50个通道的组合带来潜力。对于峰值功率> 100 MW的最新ns放大器系统,> 100 mJ的脉冲能量和> 10 kW的平均功率似乎是可行的。

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