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Passive Mode-locking of Ytterbium-doped Fiber Laser Using Chemically Exfoliated Graphene as Saturable Absorber

机译:使用化学剥离石墨烯作为可饱和吸收器的无源模式锁定

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An all-fiber passively mode-locked Ytterbium-doped fiber laser (YDFL) was demonstrated by using a chemically exfoliated graphene as saturable absorber (SA). The obtained graphene flakes were embedded into a PEO polymer to provide a modulation depth of 16.2 % and incorporated into an YDFL cavity to generate ultrafast fiber laser operating at 1052.9 nm. The laser generated stable soliton pulses with repetition rate of 4.5 MHz and the estimated minimum pulse width of 0.14 ps. The pulse energy of 1.5 nJ was obtained at the maximum pump power of 203.5 mW. This result indicates that the chemically exfoliated graphene is a promising means for mode-locked fiber lasers.
机译:通过使用化学剥离的石墨烯作为可饱和吸收剂(SA),通过使用化学剥离的石墨烯来证明全纤维被动模式锁定的镱掺杂光纤激光器(YDFL)。 将得到的石墨烯薄片嵌入PEO聚合物中,以提供16.2%的调节深度,并掺入YDFL腔中以产生以1052.9nm的超快纤维激光器。 激光产生稳定的孤子脉冲,重复率为4.5MHz,估计的最小脉冲宽度为0.14 ps。 在203.5 mW的最大泵浦功率下获得1.5 NJ的脉冲能。 该结果表明,化学输出的石墨烯是用于模式锁定光纤激光器的承诺装置。

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