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Evanescent-Light Deposition of Graphene Onto Tapered Fibers for Passive Q-Switch and Mode-Locker

机译:石墨烯在锥形光纤上的逝光沉积,用于无源Q开关和锁模器

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摘要

We demonstrate the fabrication of graphene-deposited tapered fibers (GDTFs), which can be used as saturable absorbers (SAs) for pulsed lasers. The advantages of GDTF SAs include flexibility, all-fiber configuration, and high optical damage threshold. The fabrication process is based on the interaction of the evanescent field of a tapered fiber with graphene. By in situ monitoring the transmitted power, the deposition process can be controlled, and the GDTF with a desirable level of nonsaturable absorption loss can be fabricated. We also study the dynamic deposition process by employing different waist diameters of tapered fibers and the different deposition powers. The results show that the deposition time can be significantly shortened with stronger evanescent field by decreasing the taper diameter or increasing the deposition power. Furthermore, by exploiting the GDTF as an intracavity passive power modulating element, we demonstrate efficient Q-switched and mode-locked erbium-doped fiber lasers, respectively.
机译:我们演示了石墨烯沉积的锥形光纤(GDTF)的制造,该光纤可用作脉冲激光器的可饱和吸收体(SA)。 GDTF SA的优点包括灵活性,全光纤配置和较高的光学损伤阈值。制造过程基于锥形纤维的渐逝场与石墨烯的相互作用。通过原位监测发射功率,可以控制沉积过程,可以制造出具有理想水平的不饱和吸收损耗的GDTF。我们还通过采用不同的锥形纤维腰围直径和不同的沉积功率来研究动态沉积过程。结果表明,通过减小锥度直径或增加沉积功率,可以在渐逝场更强的情况下显着缩短沉积时间。此外,通过利用GDTF作为腔内无源功率调制元件,我们分别演示了高效的Q开关和锁模掺-光纤激光器。

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