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具有增强倏逝场相互作用的单层石墨烯可饱和吸收体用于超快光纤激光锁模

Monolayer graphene saturable absorbers with strongly enhanced evanescent-field interaction for ultrafast fiber laser mode-locking.

作者信息

Park Nam Hun, Jeong Hwanseong, Choi Sun Young, Kim Mi Hye, Rotermund Fabian, Yeom Dong-Il

出版信息

Opt Express. 2015 Jul 27;23(15):19806-12. doi: 10.1364/OE.23.019806.

Abstract

We demonstrate an efficient all-fiber saturable absorber (SA) that evanescently interacts with a graphene monolayer. Strong nonlinear interaction between the graphene sheet and evanescent wave was realized in both experiments and numerical calculations by employing an over-cladding structure on high-quality monolayer graphene that uniformly covered the side-polished fiber. A passively mode-locked Er-doped fiber laser was built, including our in-line graphene SA, which stably generated ultrashort pulses with pulse duration of 377 fs at a repetition rate of 37.7 MHz. The corresponding 3-dB spectral bandwidth of the laser was measured to be 8.6 nm at the central wavelength of 1607.7 nm. We also experimentally observed that the spectral bandwidth and pulse duration of the laser output could be controlled by proper selection of the refractive index of the over-cladding material on the monolayer-graphene SA.

摘要

我们展示了一种高效的全光纤饱和吸收体(SA),它与单层石墨烯发生倏逝相互作用。通过在均匀覆盖侧面抛光光纤的高质量单层石墨烯上采用外包层结构,在实验和数值计算中均实现了石墨烯片与倏逝波之间的强非线性相互作用。搭建了一个被动锁模掺铒光纤激光器,其中包括我们的在线石墨烯SA,该激光器以37.7 MHz的重复频率稳定地产生了脉宽为377 fs的超短脉冲。在中心波长1607.7 nm处,测得该激光器相应的3 dB光谱带宽为8.6 nm。我们还通过实验观察到,通过适当选择单层石墨烯SA上外包层材料的折射率,可以控制激光输出的光谱带宽和脉冲持续时间。

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