Woodward R I, Howe R C T, Runcorn T H, Hu G, Torrisi F, Kelleher E J R, Hasan T
Opt Express. 2015 Jul 27;23(15):20051-61. doi: 10.1364/OE.23.020051.
We fabricate a free-standing molybdenum diselenide (MoSe2) saturable absorber by embedding liquid-phase exfoliated few-layer MoSe2 flakes into a polymer film. The MoSe2-polymer composite is used to Q-switch fiber lasers based on ytterbium (Yb), erbium (Er) and thulium (Tm) gain fiber, producing trains of microsecond-duration pulses with kilohertz repetition rates at 1060 nm, 1566 nm and 1924 nm, respectively. Such operating wavelengths correspond to sub-bandgap saturable absorption in MoSe2, which is explained in the context of edge-states, building upon studies of other semiconducting transition metal dichalcogenide (TMD)-based saturable absorbers. Our work adds few-layer MoSe2 to the growing catalog of TMDs with remarkable optical properties, which offer new opportunities for photonic devices.
我们通过将液相剥离的少层二硒化钼(MoSe₂)薄片嵌入聚合物薄膜中来制备一种独立式二硒化钼可饱和吸收体。该MoSe₂-聚合物复合材料用于基于镱(Yb)、铒(Er)和铥(Tm)增益光纤的调Q光纤激光器,分别在1060nm、1566nm和1924nm产生具有千赫兹重复率的微秒持续时间脉冲序列。这些工作波长对应于MoSe₂中的子带隙可饱和吸收,结合其他基于半导体过渡金属二卤化物(TMD)的可饱和吸收体的研究,在边缘态的背景下对此进行了解释。我们的工作将少层MoSe₂添加到了具有卓越光学特性的TMD不断增长的列表中,这为光子器件提供了新的机遇。