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Excitons in quantum-dot quantum-well nanoparticles

机译:量子点量子阱纳米粒子中的激子

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A variational calculation is presented for the ground-state properties of excitons confined in spherical core-shell quantum-dot quantum-well (QDQW) nanoparticles. The relationship between the exciton states and structure parameters of QDQW nanoparticles is investigated, in which both the heavy-hole and the light-hole exciton states are considered. The results show that the confinement energies of the electron and hole states and the exciton binding energies depend sensitively on the well width and core radius of the QDQW structure. A detailed comparison between the heavy-hole and light-hole exciton states is given. Excellent agreement is found between experimental results and our calculated 1se-1sh transition energies.
机译:提出了一种变分计算方法,用于限制在球形核-壳量子点量子阱(QDQW)纳米粒子中的激子的基态性质。研究了QDQW纳米粒子的激子态与结构参数之间的关系,其中考虑了重孔和轻孔激子态。结果表明,电子和空穴态的约束能和激子结合能敏感地取决于QDQW结构的阱宽度和芯半径。给出了重空穴和轻空穴激子状态之间的详细比较。实验结果与我们计算出的1se-1sh跃迁能之间存在极好的一致性。

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