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The Combined Influence of Hydrostatic Pressure and Temperature on Nonlinear Optical Properties of GaAs/Ga0.7Al0.3As Morse Quantum Well in the Presence of an Applied Magnetic Field

机译:施加磁场存在下GaAs / Ga0.7Al0.3As0.3As0.3As0.3As0.3As0.3As0.3As0.3As0.3的非线性光学性能的综合影响

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摘要

Studies aimed at understanding the nonlinear optical (NLO) properties of GaAs/Ga0.7Al0.3As morse quantum well (QW) have focused on the intersubband optical absorption coefficients (OACs) and refractive index changes (RICs). These studies have taken two complimentary approaches: (1) The compact-density-matrix approach and iterative method have been used to obtain the expressions of OACs and RICs in morse QW. (2) Finite difference techniques have been used to obtain energy eigenvalues and their corresponding eigenfunctions of GaAs/Ga0.7Al0.3As morse QW under an applied magnetic field, hydrostatic pressure, and temperature. Our results show that the hydrostatic pressure and magnetic field have a significant influence on the position and the magnitude of the resonant peaks of the nonlinear OACs and RICs. Simultaneously, a saturation case is observed on the total absorption spectrum, which is modulated by the hydrostatic pressure and magnetic field. Physical reasons have been analyzed in depth.
机译:旨在了解的GaAs / Ga0.7Al0.3As的非线性光学(NLO)性质的研究莫尔斯量子阱(QW)都集中在带间的光学吸收系数(OACS)和折射率的变化(RIC的)。这些研究采取了两种互补方法:(1)紧凑密度 - 矩阵方法和迭代方法已被用于在莫尔斯QW中获得OAC和RICS的表达。 (2)的有限差分技术已被用于获得能量本征值和GaAs / Ga0.7Al0.3As莫尔斯QW的下其相应的本征函数施加的磁场,流体静压力和温度。我们的研究结果表明,静水压压力和磁场对非线性OAC和RICS的共振峰的位置和大小具有显着影响。同时,在通过静压压力和磁场调制的总吸收光谱上观察到饱和情况。物理原因已经深入分析。

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