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Linear and nonlinear optical absorptions in one-dimensional quantum dot with semi-parabolic confining potential

机译:具有半抛物约束势的一维量子点的线性和非线性光学吸收

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Linear and nonlinear optical absorptions in one-dimensional semi-parabolic quantum dot is investigated. The analytical expression of linear and third-order nonlinear optical absorption coefficients are obtained by using compact density-matrix approach and iterative method. Numerical results are presented for an GaAs/AlGaAs quantum dot and the dependence on the quantum confinement of the semi-parabolic quantum dot, the incident optical intensity, and on the relaxation rate are also investigated. The results indicate that the optical absorption coefficients are strongly influenced by the confining frequency, relaxation time, and the incident optical intensity, respectively. However, their influences for the linear optical absorption, third-order nonlinear optical absorption, and the total optical absorption are different. We think our theoretical study may make a great contribution to experimental studies and may open up new opportunities for practical exploitation of the quantum-size effect in optical devices.
机译:研究了一维半抛物线量子点中的线性和非线性光学吸收。利用紧凑密度矩阵法和迭代法,得到了线性和三阶非线性光学吸收系数的解析表达式。给出了GaAs / AlGaAs量子点的数值结果,并研究了其对半抛物线量子点的量子约束,入射光强度和弛豫率的依赖性。结果表明,光吸收系数分别受到约束频率,弛豫时间和入射光强度的强烈影响。但是,它们对线性光学吸收,三阶非线性光学吸收和总光学吸收的影响是不同的。我们认为我们的理论研究可能会为实验研究做出巨大贡献,并可能为光学器件中量子尺寸效应的实际开发开辟新的机会。

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