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MoS2-clad microfibre laser delivering conventional dispersion-managed and dissipative solitons

机译:包覆MoS2的微纤维激光器可提供常规的色散管理和耗散的孤子

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摘要

Molybdenum disulfide (MoS2), whose monolayer possesses a direct band gap, displays promising applications in optoelectronics, photonics, and lasers. Recent researches have demonstrated that MoS2 has not only a significant broadband saturable absorption performance, but also a higher optical nonlinear response than graphene. However, MoS2 shows much lower optical damage threshold owing to the poorer thermal conductivity and mechanical property. Here, we exploit a MoS2-clad microfibre (MCM) as the saturable absorber (SA) for the generation of ultrashort pulses under different dispersion conditions. The improved evanescent field interaction scheme can overcome the laser-induced thermal damage, as well as take full advantage of the strong nonlinear effect of MoS2. With the MCM SA, conventional, dispersion-managed, and dissipative solitons are generated around 1600 nm in Er-doped fibre lasers with anomalous, near-zero, and normal cavity dispersions, respectively. Our work paves the way for applications of 2D layered materials in photonics, especially in laser sources.
机译:单层具有直接带隙的二硫化钼(MoS2)在光电子,光子学和激光器中显示出广阔的应用前景。最新研究表明,MoS2不仅具有显着的宽带可饱和吸收性能,而且具有比石墨烯更高的光学非线性响应。但是,由于较差的导热性和机械性能,MoS2的光学损伤阈值低得多。在这里,我们利用MoS2包覆的微纤维(MCM)作为可饱和吸收剂(SA),以在不同的分散条件下产生超短脉冲。改进的渐逝场相互作用方案可以克服激光引起的热损伤,并充分利用MoS2的强非线性效应。使用MCM SA,在掺with光纤激光器中分别在1600 nm左右产生常规的,色散管理的和耗散的孤子,它们分别具有异常,接近零的色散和正常的腔色散。我们的工作为在光子学中,尤其是在激光源中二维层状材料的应用铺平了道路。

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