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Passively mode-locked fiber laser by using monolayer chemical vapor deposition of graphene on D-shaped fiber

机译:通过在D形光纤上单层化学气相沉积石墨烯的无源锁模光纤激光器

摘要

We demonstrate a monolayer graphene saturable absorber (SA) based on D-shaped fiber for operation of the mode-locked fiber laser. The monolayer graphene is grown by chemical vapor deposition (CVD) on Cu substrate and transferred onto the polymer, and then covered with D-shaped fiber, which allows light–graphene interaction via the evanescent field of the fiber. Due to the side-coupled interaction, the length of graphene is long enough to avoid optical power-induced thermal damage. Using such a graphene-based SA, stable mode-locked solitons with 4.5 nm spectral bandwidth and 713 fs pulsewidth at the 1563 nm wavelength have been obtained under 280 mW pump power. The influence of total cavity dispersion on the optical spectrum and pulse is also investigated by adding different lengths of single-mode fiber in the laser cavity.
机译:我们演示了基于D形光纤的单层石墨烯可饱和吸收剂(SA),用于锁模光纤激光器的操作。单层石墨烯通过化学气相沉积(CVD)在Cu基体上生长,然后转移到聚合物上,然后覆盖D形纤维,从而通过纤维的van逝场进行光-石墨烯相互作用。由于侧面耦合的相互作用,石墨烯的长度足够长,可以避免光功率引起的热损伤。使用这种基于石墨烯的SA,在280 mW的泵浦功率下获得了具有4.5 nm光谱带宽和713fs脉冲宽度的稳定锁模孤子,波长为1563 nm。还通过在激光腔中添加不同长度的单模光纤来研究总腔色散对光谱和脉冲的影响。

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