Cui Yudong, Lu Feifei, Liu Xueming
State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an 710119, China.
State Key Laboratory of Modern Optical Instrumentation, Department of Optical Engineering, Zhejiang University, Hangzhou 310027, China.
Sci Rep. 2016 Jul 26;6:30524. doi: 10.1038/srep30524.
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.
二硫化钼(MoS₂)的单层具有直接带隙,在光电子学、光子学和激光领域展现出了广阔的应用前景。最近的研究表明,MoS₂不仅具有显著的宽带饱和吸收性能,而且其光学非线性响应比石墨烯更高。然而,由于热导率和机械性能较差,MoS₂的光学损伤阈值要低得多。在此,我们利用包覆二硫化钼的微光纤(MCM)作为饱和吸收体(SA),在不同色散条件下产生超短脉冲。改进的倏逝场相互作用方案可以克服激光诱导的热损伤,同时充分利用MoS₂的强非线性效应。使用MCM SA,在具有反常、近零和正常腔色散的掺铒光纤激光器中,分别在1600 nm左右产生了传统孤子、色散管理孤子和耗散孤子。我们的工作为二维层状材料在光子学领域,尤其是在激光源中的应用铺平了道路。