量子点
静水压力
吸收(声学)
蓝移
半径
衰减系数
有效质量(弹簧-质量系统)
航程(航空)
限制
材料科学
非线性系统
凝聚态物理
分子物理学
物理
光电子学
光学
量子力学
光致发光
热力学
机械工程
计算机安全
计算机科学
复合材料
工程类
标识
DOI:10.1002/pssb.202300094
摘要
The nonlinear optical properties of quantum dots under multidimensional confinement potential are investigated. In the framework of the effective mass approximation, the analytical formula of the optical absorption coefficient in the quantum dots is derived using the density matrix method and the iterative procedure, and the numerical results of typical Al 0.3 Ga 0.7 As/GaAs material are calculated. Through calculation and numerical fitting, it is found that increasing temperature and the depth of limiting potential will give rise to the absorption peak to move to the high‐energy region commonly referred to as the blueshift, within a certain range of parameter variations. While reducing the range of limiting potential, quantum dot radius and the hydrostatic pressure can achieve the same effect. It is important to emphasize that variations in hydrostatic pressure and the depth of the limiting potential result in significant changes to the peak value of the optical absorption coefficient. The research results have a certain guiding significance for further study of the optical properties of quantum dots under multidimensional confinement potential and their application in practical production.
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