Yi Jia Guang, Zhang Qiang, Xian Huang Zhen, Bin Huang Shu, Xu Jing
School of Science, Tianjin University of Commerce, Tianjin 300134, P. R. China.
Phys Chem Chem Phys. 2017 Oct 18;19(40):27259-27265. doi: 10.1039/c7cp05260j.
Metal nanostructure plays an important role in tailoring the performance of various two-dimensional semiconductors. Herein, we theoretically study the optical properties of A, B and C excitons in monolayer MoS coated on ultrathin gold films less than 20 nm in thickness. We show that resonances of these three excitons occur at ∼660, ∼613 and ∼426 nm, respectively and each exciton maximizes absorption intensity at total reflection. However, because of the optical scattering effect induced by the ultrathin gold film, the maximum absorption of each exciton appears at the incident angle θ that is larger than its corresponding surface plasmon resonance angle θ. It is possible that due to the gradual approach between θ and θ, the maximum absorption intensity of the exciton gradually increases with thickening of the gold film. For external reflection, the C exciton maximizes absorption intensity around its corresponding quasi-Brewster's angle, whereas the incident angle, at which the A or B exciton gives the maximum absorption, gradually deviates from its corresponding quasi-Brewster's angle as the gold film thickness decreases. This discrepancy is explained by the dependencies of extinction coefficients of hybrid films on the excitonic resonance wavelength and gold film thickness.
金属纳米结构在调控各种二维半导体的性能方面起着重要作用。在此,我们从理论上研究了厚度小于20nm的超薄金膜上包覆的单层MoS中A、B和C激子的光学性质。我们表明,这三种激子的共振分别出现在约660nm、约613nm和约426nm处,并且每个激子在全反射时吸收强度最大。然而,由于超薄金膜引起的光学散射效应,每个激子的最大吸收出现在入射角θ大于其相应表面等离子体共振角θ的情况下。有可能由于θ与θ之间的逐渐接近,激子的最大吸收强度随着金膜厚度的增加而逐渐增大。对于外反射,C激子在其相应的准布儒斯特角附近吸收强度最大,而随着金膜厚度减小,A或B激子产生最大吸收的入射角逐渐偏离其相应的准布儒斯特角。这种差异可以通过混合膜的消光系数对激子共振波长和金膜厚度的依赖性来解释。