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Kilowatt-peak-power, single-frequency, pulsed fiber laser near 2 (mu)m

机译:千瓦峰值功率,单频,脉冲光纤激光器接近2μm

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We generated single-frequency pulses at kilowatt peak power from an all-fiber Tm-doped master oscillator power amplifier system, which is the first report of this kind (to the best of our knowledge) of a laser in the 2 (mu)m region. Compared with the laser linewidth of seed pulses, spectral broadening by a factor of 3 was observed with the amplified pulses. This was attributed to self-phase modulation in passive pigtail fibers of the components (isolator and wavelength division multiplexing) that were placed after the fiber amplifier. The short pulse width (approx7 ns) of the kilowatt-level pulses prevents an onset of stimulated Brillouin scattering in the long fiber. When launching the pulses into several-meter single-mode fiber, significant nonlinear spectral broadening occurs due to modulation instability in the fiber. This reaction is beneficial for generation of a mid- and long-wavelength IR supercontinuum in nonlinear IR fibers.
机译:我们从全光纤掺杂Tm的主振荡器功率放大器系统中产生了峰值功率为千瓦的单频脉冲,这是(据我们所知)这种2μm激光器的首次报道。地区。与种子脉冲的激光线宽相比,放大脉冲的光谱展宽了3倍。这归因于在光纤放大器之后放置的无源尾纤中的自相位调制(隔离器和波分复用)​​。千瓦级脉冲的短脉冲宽度(大约7 ns)可防止在长光纤中出现受激布里渊散射。当将脉冲发射到几米单模光纤中时,由于光纤中的调制不稳定,会发生明显的非线性光谱展宽。该反应对于在非线性IR光纤中产生中波长和长波长IR超连续谱是有利的。

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