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Graphene-clad microfibre saturable absorber for ultrafast fibre lasers

机译:石墨烯包覆的超细纤维可饱和吸收体用于超快光纤激光器

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摘要

Graphene, whose absorbance is approximately independent of wavelength, allows broadband light–matter interactions with ultrafast responses. The interband optical absorption of graphene can be saturated readily under strong excitation, thereby enabling scientists to exploit the photonic properties of graphene to realize ultrafast lasers. The evanescent field interaction scheme of the propagating light with graphene covered on a D-shaped fibre or microfibre has been employed extensively because of the nonblocking configuration. Obviously, most of the fibre surface is unused in these techniques. Here, we exploit a graphene-clad microfibre (GCM) saturable absorber in a mode-locked fibre laser for the generation of ultrafast pulses. The proposed all-surface technique can guarantee a higher efficiency of light–graphene interactions than the aforementioned techniques. Our GCM-based saturable absorber can generate ultrafast optical pulses within 1.5 μm. This saturable absorber is compatible with current fibre lasers and has many merits such as low saturation intensities, ultrafast recovery times, and wide wavelength ranges. The proposed saturable absorber will pave the way for graphene-based wideband photonics.
机译:石墨烯的吸收率几乎与波长无关,可实现宽带光-物质相互作用以及超快响应。在强激发下,石墨烯的带间光吸收很容易饱和,从而使科学家能够利用石墨烯的光子特性来实现超快激光器。由于其非阻挡结构,已广泛采用了传播光与覆盖在D形纤维或微纤维上的石墨烯的e逝场相互作用方案。显然,这些技术中大部分纤维表面未被使用。在这里,我们在锁模光纤激光器中利用石墨烯包覆的微纤维(GCM)饱和吸收体来产生超快脉冲。与上述技术相比,提出的全表面技术可以保证更高的光-石墨烯相互作用效率。我们基于GCM的可饱和吸收体可以在1.5μm范围内产生超快的光脉冲。该可饱和吸收体与当前的光纤激光器兼容,并具有许多优点,例如饱和强度低,恢复时间超快以及波长范围宽。拟议的可饱和吸收剂将为基于石墨烯的宽带光子学铺平道路。

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