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首页> 外文期刊>Physica status solidi, B. Basic research >Quantum size and dielectric effects of polar optical phonon spectra in wurtzite nitride quantum dots
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Quantum size and dielectric effects of polar optical phonon spectra in wurtzite nitride quantum dots

机译:纤锌矿氮化物量子点中极性光学声子光谱的量子尺寸和介电效应

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Based on the macroscopic dielectric continuum model, the interface-optical-propagating (10-PR) mixing phonon modes of a quasi-zero-dimensional wurtzite cylindrical quantum dot (QD) structure are derived and studied. The analytical phonon states of 10-PR mixing modes are given. It is found that there are two types of IO-PR mixing phonon modes, i.e., the p-IO/z-PR mixing modes and the z-IO/p-PR mixing modes, existing in wurtzite QDs. Each 10-PR mixing mode also has symmetrical and antisymmetrical forms. Via a standard procedure of field quantization, the Frohlich Hamiltonians of the electron—(IO- PR) mixing phonon interaction are obtained. The orthogonal relations of polarization eigenvectors for these IO-PR mixing modes are also displayed. Numerical calculations for a wurtzite GaN cylindrical QD are focused on the quantum size effect and the dielectric effect on the dispersive properties of IO-PR mixing modes. The results reveal that both the radial-direction size and the axial-direction size as well as the dielectric matrix have great influence on the dispersive frequencies of the IO-PR mixing phonon modes. The limiting features of dispersive curves of these phonon modes are discussed in depth. The phonon modes' "reducing" behavior of wurtzite quantum confined structures has been found in the systems. Moreover, the behaviors that the IO-PR mixing phonon modes in wurtzite QDs reduce to the 10 modes and the PR modes in wurtzite quantum well and quantum wire systems are analyzed deeply from the viewpoints of both physics and mathematics. These results show that the present theories of polar mixing phonon modes in wurtzite cylindrical QDs are consistent with the phonon mode theories in wurtzite quantum wells and quantum wire systems.
机译:基于宏观介电连续体模型,推导并研究了准零维纤锌矿圆柱量子点(QD)结构的界面光传播(10-PR)混合声子模。给出了10-PR混合模式的解析声子状态。发现纤锌矿量子点中存在两种类型的IO-PR混合声子模式,即p-IO / z-PR混合模式和z-IO / p-PR混合模式。每种10-PR混合模式也具有对称和反对称形式。通过标准的场量化程序,获得了电子-(IO-PR)混合声子相互作用的Frohlich哈密顿量。还显示了这些IO-PR混合模式的极化特征向量的正交关系。纤锌矿型GaN圆柱QD的数值计算集中在量子尺寸效应和介电效应对IO-PR混合模式的色散特性的影响上。结果表明,径向尺寸和轴向尺寸以及介电基体都对IO-PR混合声子模的色散频率有很大影响。深入讨论了这些声子模的色散曲线的局限性。在系统中已经发现了声子模的纤锌矿量子约束结构的“还原”行为。此外,从物理学和数学的角度深入分析了纤锌矿量子点中的IO-PR混合声子模降到10种模态,纤锌矿量子阱和量子线系统中的PR模态。这些结果表明,纤锌矿圆柱量子点中的极化混合声子模理论与纤锌矿量子阱和量子线系统中的声子模理论是一致的。

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