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Gain-switched CW fiber laser for improved supercontinuum generation in a PCF

机译:增益开关CW光纤激光器,用于改善pCF中的超连续谱产生

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摘要

We demonstrate supercontinuum generation in a PCF pumped by a gain-switched high-power continuous wave (CW) fiber laser. The pulses generated by gain-switching have a peak power of more than 700 W, a duration around 200 ns, and a repetition rate of 200 kHz giving a high average power of almost 30 W. By coupling such a pulse train into a commercial nonlinear photonic crystal fiber, a supercontinuum is generated with a spectrum spanning from 500 to 2250 nm, a total output power of 12 W, and an infrared flatness of 6 dB over a bandwidth of more than 1000 nm with a power density above 5 dBm/nm (3 mW/nm). This is considerably broader than when operating the same system under CW conditions. The presented approach is attractive due to the high power, power scalability, and reduced system complexity compared to picosecond-pumped supercontinuum sources. © 2011 Optical Society of America.
机译:我们演示了由增益切换高功率连续波(CW)光纤激光器泵浦的PCF中超连续谱的产生。通过增益切换产生的脉冲具有超过700 W的峰值功率,大约200 ns的持续时间和200 kHz的重复频率,从而提供了几乎30 W的高平均功率。通过将这种脉冲序列耦合到商用非线性器件中光子晶体光纤,在500到2250 nm的光谱范围内产生超连续谱,总输出功率为12 W,在超过1000 nm的带宽上具有6 dB的红外平坦度,功率密度高于5 dBm / nm (3 mW / nm)。这比在CW条件下运行同一系统时要宽得多。与皮秒泵浦的超连续谱源相比,该方法具有较高的功率,功率可伸缩性,并降低了系统复杂性,因此具有吸引力。 ©2011美国眼镜学会。

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