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Monolithic sub-MW peak power tapered ytterbium-doped fiber amplifier

机译:单片子MW峰值功率锥形YTTerbium掺杂光纤放大器

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In this study, we present a novel monolithic ytterbium-doped fiber amplifier with more than 0.5 MW peak power output power. The amplifier is based on a 2.1 m long tapered fiber with core/cladding diameters changing from 10/80 urn (at the signal input end) to 50/430 μm (signal output, pump input). The fiber has all-glass polarization-maintaining design, that make possible utilization of conventional FC adapter and standard angle polishing to 7° for thick end. Pump absorption was measured to be 8 dB at 915 nm for the whole fiber length. Despite a very large mode area (~30 μm) the tapered fiber demonstrates low bend sensitivity (it is possible to coil tapered fiber with 9 cm radius) and a diffraction limited beam quality. In the amplifier the pump power was coupled through the thick end by means of collimating and focusing lenses. Dichroic mirror employed to separate output signal and counter-propagating pump power. We obtained 3.5 W of average output power for a 5 mW seed signal (coupled by usual fusion splicing through a thin end) corresponding to a 28 dB gain. The amplified pulses have duration of about 5 ps and energy of about 3.3 μJ that corresponding to over 0.5 MW peak power. The spectral width was 28 nm operating with center wavelength of 1057 nm.To the best of our knowledge it is the highest peak power obtained directly from the all-fiber amplifier.
机译:在这项研究中,我们提出了一种具有超过0.5 MW峰值功率输出功率的新型单片型掺杂纤维放大器。放大器基于2.1米长的锥形光纤,核心/包层直径从10/80 URN(信号输入端)变为50/430μm(信号输出,泵输入)。纤维具有全玻璃偏振 - 保持设计,可以利用传统的Fc适配器和标准角度抛光至7°的厚端。测量泵吸收为915nm的8 dB,对于整个纤维长度。尽管具有非常大的模式区域(〜30μm),锥形纤维显示出低弯曲灵敏度(可以通过9cm半径的线圈锥形纤维)和衍射限制光束质量。在放大器中,泵电源通过准直和聚焦透镜通过厚端耦合。二向色镜像采用输出信号和反传播泵电源。我们获得了3.5W的平均输出功率,用于5 MW种子信号(通过常用熔接通过薄端耦合),对应于28dB增益。放大的脉冲具有约5ps的持续时间和约3.3μj的能量,其对应于超过0.5mW的峰值功率。光谱宽度为28nm,中心波长为1057 nm。我们所知的最佳是直接从全光纤放大器获得的最高峰值功率。

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