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Nonlinear Optical Rectification of Confined Exciton in a ZnO/ZnMgO Strained Quantum Dot

机译:ZnO / ZnMgO应变量子点中受限激子的非线性光学整流

摘要

Heavy hole exciton binding energies as functions of dot radius and the Mg alloy content in a ZnO/MgxZn1 – xO quantum dot are investigated. The effects of strain, including the hydrostatic and the biaxial strain, and the internal electric field, due to spontaneous and piezoelectric polarization are taken into account. Numerical calculations are performed using variational procedure within the single band effective mass approximation. The nonlinear optical rectification is investigated for different dot radius and the values of Mg alloy content in a ZnO/MgxZn1 – xO quantum dot taking into account the strain-induced piezoelectric effects. The results show that the resonant peak of the nonlinear optical rectification is blue shifted with the confinement effect and the Mg alloy content.When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/30261
机译:研究了ZnO / MgxZn1-xO量子点中重空穴激子的结合能与点半径和镁合金含量的关系。考虑了自发和压电极化引起的应变(包括静水压和双轴应变)以及内部电场的影响。在单频带有效质量近似范围内使用变分程序进行数值计算。考虑了应变引起的压电效应,研究了不同点半径和ZnO / MgxZn1-xO量子点中Mg合金含量的非线性光学整流。结果表明,非线性光学整流的共振峰随着限制效应和Mg合金含量的变化而蓝移。当您引用文件时,请使用以下链接http://essuir.sumdu.edu.ua/handle/ 123456789/30261

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