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首页> 外文期刊>Journal of Computational Electronics >Optical properties of quantum dots versus quantum antidots: Effects of hydrostatic pressure and temperature
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Optical properties of quantum dots versus quantum antidots: Effects of hydrostatic pressure and temperature

机译:量子点与量子解毒剂的光学性质:静水压力和温度的影响

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摘要

The effects of hydrostatic pressure and temperature on the linear, nonlinear and total absorption coefficients (ACs) of a hydrogenic impurity in the center of spherical quantum dot (QD) and quantum antidot (QAD) have been investigated. The comparative approach is used for presenting the results of both models. Our numerical results indicate that for QD nano-systems, by increasing the pressure, the resonance peak positions (RPPs) of ACs shift towards higher energies, while for QAD nano-systems, RPPs of ACs approximately remain unchanged. Furthermore, the larger pressure leads to the smaller height of resonance peak in both models. Also, our results show that the temperature increasing imposes the opposite effect on RPPs than the pressure increasing to the both models.
机译:研究了静水压力和温度对球形量子点(QD)和量子解毒剂(QAD)中心氢杂质的线性,非线性和总吸收系数(ACs)的影响。比较方法用于表示两个模型的结果。我们的数值结果表明,对于QD纳米系统,通过增加压力,AC的共振峰位置(RPP)向更高能量转移,而对于QAD纳米系统,AC的RPPs大致保持不变。此外,在两个模型中,较大的压力导致较小的共振峰高度。同样,我们的结果表明,温度升高对RPP的作用与两种模型中压力的增加都相反。

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