Bautista Jessica E Q, Lyra Marcelo L, Lima R P A
Opt Express. 2014 Nov 17;22(23):28270-5. doi: 10.1364/OE.22.028270.
We study the exciton contribution to the third-order optical susceptibility of one-dimensional semiconductor quantum dots and show that the screening of the electron-hole interaction has a strong influence on the nonlinear optical properties in the weak confinement regime. Based on a density matrix formulation, we estimate the spectrum of the third-order optical susceptibility and its contribution to the refraction index and absorption coefficient. In particular, we show that the multipeaked spectrum of the nonlinear susceptibility, which results from the hydrogenoid character of the exciton eigenstates for a purely Coulombian electron-hole coupling, is reverted towards a single peaked structure as the interaction becomes strongly screened, thus leading to a substantial enhancement of the nonlinear optical properties of semiconductor quantum dots.
我们研究了激子对一维半导体量子点三阶光学极化率的贡献,并表明在弱限制区域中,电子 - 空穴相互作用的屏蔽对非线性光学性质有强烈影响。基于密度矩阵公式,我们估算了三阶光学极化率的光谱及其对折射率和吸收系数的贡献。特别地,我们表明,对于纯库仑电子 - 空穴耦合,由于激子本征态的类氢特性导致的非线性极化率的多峰光谱,随着相互作用被强烈屏蔽而转变为单峰结构,从而导致半导体量子点的非线性光学性质大幅增强。