Qiu Yun-Hang, Chen Kai, Ding Si-Jing, Nan Fan, Lin Yong-Jie, Ma Jia-Xing, Hao Zhong-Hua, Zhou Li, Wang Qu-Quan
Key Laboratory of Artificial Micro- and Nano-structures of the Ministry of Education, School of Physics and Technology, Wuhan University, Wuhan 430072, P. R. China.
Nanoscale. 2019 Apr 25;11(17):8538-8545. doi: 10.1039/c8nr09946d.
We synthesize Au@WS2 hybrid nanobelts and investigate their third-order nonlinear responses mediated by a strong anti-Stokes effect. By using the femtosecond Z-scan technique and tuning the excitation photon energy (Eexc), we find the sign reversals of both nonlinear absorption coefficient β and nonlinear refractive index γ to be around 1.60 eV, which is prominently higher than the bandgap (1.35 eV) of WS2 bulk owing to the strong anti-Stokes processes around the bandgap of the indirect semiconductors. The saturable absorption and self-defocusing of the WS2 nanobelts are significantly enhanced by the plasmon resonance of the Au nanoparticles when Eexc > 1.60 eV. But the excited state absorption assisted by the anti-Stokes processes and the self-focusing observed at Eexc < 1.60 eV are suppressed by the surface plasmon. Furthermore, by using population rate equations, we theoretically analyze the sign reversals of both β and γ and reveal the physical mechanism of the unique nonlinear responses of the hybrids with the plasmon resonance and anti-Stokes effect. These observations enrich the understanding of the nonlinear processes and interactions between the plasmon and exciton and are helpful for developing nonlinear optical nanodevices.
我们合成了金@二硫化钨混合纳米带,并研究了由强反斯托克斯效应介导的它们的三阶非线性响应。通过使用飞秒Z扫描技术并调节激发光子能量(Eexc),我们发现非线性吸收系数β和非线性折射率γ的符号反转都在1.60电子伏特左右,这显著高于块状二硫化钨的带隙(1.35电子伏特),这是由于间接半导体带隙周围的强反斯托克斯过程。当Eexc > 1.60电子伏特时,金纳米颗粒的等离子体共振显著增强了二硫化钨纳米带的饱和吸收和自散焦。但在Eexc < 1.60电子伏特时观察到的由反斯托克斯过程辅助的激发态吸收和自聚焦被表面等离子体抑制。此外,通过使用速率方程,我们从理论上分析了β和γ的符号反转,并揭示了具有等离子体共振和反斯托克斯效应的混合体独特非线性响应的物理机制。这些观察结果丰富了对等离子体和激子之间非线性过程和相互作用的理解,并有助于开发非线性光学纳米器件。