首页> 外文期刊>The European physical journal, B. Condensed matter physics >Optical absorption and refraction index change of a confined exciton in a spherical quantum dot nanostructure
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Optical absorption and refraction index change of a confined exciton in a spherical quantum dot nanostructure

机译:球形量子点纳米结构中受限激子的光吸收和折射率变化

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Electronic energies of an exciton confined in a strained Zn_(1-x) Cd_x Se/ZnSe quantum dot have been computed as a function of dot radius with various Cd content. Calculations have been performed using Bessel function as an orthonormal basis for different confinement potentials of barrier height considering the internal electric field induced by the spontaneous and piezoelectric polarizations. The optical absorption coefficients and the refractive index changes between the ground state (L = 0) and the first excited state (L = 1) are investigated. It is found that the optical properties in the strained ZnCdSe/ZnSe quantum dot are strongly affected by the confinement potentials and the dot radii. The intensity of the total absorption spectra increases for the transition between higher levels. The obtained optical nonlinearity brings out the fact that it should be considered in calculating the optical properties in low dimensional semiconductors especially in quantum dots.
机译:已经计算了限制在应变Zn_(1-x)Cd_x Se / ZnSe量子点中的激子的电子能量,该能量是点半径与各种Cd含量的函数。考虑到由自发极化和压电极化引起的内部电场,已经使用Bessel函数作为势垒高度的不同限制势的正交标准进行了计算。研究了基态(L = 0)和第一激发态(L = 1)之间的光吸收系数和折射率变化。发现约束ZnSdSe / ZnSe量子点中的光学性质受约束电位和点半径的强烈影响。总吸收光谱的强度随着较高能级之间的跃迁而增加。所获得的光学非线性带来了以下事实:在计算低维半导体(尤其是量子点)中的光学特性时应考虑该非线性。

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