State Key Laboratory of Luminescent Materials and Devices and School of Materials Science and Engineering, South China University of Technology, Wushan Road 381, Guangzhou 510641, PR China.
Nanoscale. 2018 May 24;10(20):9608-9615. doi: 10.1039/c8nr01573b.
Non-equilibrium electrons induced by ultrafast laser excitation in a correlated electron material can disturb the Fermi energy as well as optical nonlinearity. Here, non-equilibrium electrons translate a semiconductor TiS2 material into a plasma to generate broad band nonlinear optical saturable absorption with a sub-picosecond recovery time of ∼768 fs (corresponding to modulation frequencies over 1.3 THz) and a modulation response up to ∼145%. Based on this optical nonlinear modulator, a stable femtosecond mode-locked pulse with a pulse duration of ∼402 fs and a pulse train with a period of ∼175.5 ns is observed in the all-optical system. The findings indicate that non-equilibrium electrons can promote a TiS2-based saturable absorber to be an ultrafast switch for a femtosecond pulse output.
非平衡电子在关联电子材料中由超快激光激发诱导,会干扰费米能级和光学非线性。在此,非平衡电子将半导体 TiS2 材料转化为等离子体,从而产生宽带非线性光饱和吸收,其恢复时间约为 768fs(对应调制频率超过 1.3THz),调制响应高达约 145%。基于这种光学非线性调制器,在全光系统中观察到了持续时间约为 402fs 的稳定飞秒锁模脉冲和周期约为 175.5ns 的脉冲序列。研究结果表明,非平衡电子可以促进基于 TiS2 的可饱和吸收体成为用于飞秒脉冲输出的超快开关。