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纤锌矿InGaN staggered量子阱中的激子态和光学性质
引用本文:王玉平,耿振铎.纤锌矿InGaN staggered量子阱中的激子态和光学性质[J].原子与分子物理学报,2017,34(6).
作者姓名:王玉平  耿振铎
作者单位:新乡学院 物理与电子工程学院,河南师范大学 物理与电子工程学院
摘    要:本文将基于有效质量近似下的变分法,理论研究了纤锌矿InGaN/GaN staggered 量子阱中的激子态和光学性质。数值结果显示了InGaN量子阱中的量子尺寸和staggered受限垒对束缚于量子阱中的激子态和光学性质有着明显地影响。当阱宽增加时,量子受限效应减弱,激子结合能降低, 带间发光波长增加。另一方面,当量子阱中staggered受限势增加时,量子受限效应增强,激子结合能升高,带间发光波长降低。本文的理论结果证明了可以通过调节staggered垒高和量子尺寸来调控纤锌矿InGaN staggered 量子阱中的激子态和光学性质。

关 键 词:光学性质  量子阱  极化场

Excition states and optical properties in wurtzite InGaN staggered quantum wells
Abstract:In this work, based on the effective mass approximation and the variational methods, exciton states and optical properties are calculated theoretically in wurtzite InGaN/GaN staggered quantum wells. Numerical results show that the effects of quantum size and staggered barrier height are obvious on exciton states and optical properties in the wurtzite InGaN quantum wells. When the well width increases, quantum confinement effects become weaken, exciton binding energy decreases, the emission wavelength increases. On the other hand, when the staggered barrier height increases, quantum confinement effects increase, exciton binding energy increases, emission wavelength decreases. Therefore, our results indicate that exition states and optical properties can be tuned effectively by quantum size and staggered barrier height in the wurtzite InGaN staggered quantum wells.
Keywords:optical properties  quantum wells  polarization field
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