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Energy spectra and lifetimes of quasiparticles in an open quantum dot surrounded by identical barriers in a cylindrical quantum wire

机译:圆柱形量子线中被相同势垒包围的开放量子点中准粒子的能谱和寿命

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A theory of quasi-stationary states and lifetimes of electrons, holes, and excitons in an open cylindrical semiconductor quantum wire containing a quantum dot surrounded by two identical antidots (with potential spectra and lifetimes barriers of finite height) is developed using the scattering matrix method. The energy spectra and lifetimes of electrons, holes, and excitons in a beta-HgS/beta-CdS/beta-HgS/beta-CdS/beta-HgS nanolieterosystem are calculated and analyzed as functions of the geometric parameters of the quantum dot involved. It is demonstrated that an increase in the height of the quantum dot leads to a decrease in the energy of quasi-stationary exciton states of the Breit-Wigner type and to an increase in their lifetimes. The lifetime of exciton states is long enough for these states to be observed in the experiment. (c) 2005 Pleiades Publishing, Inc.
机译:利用散射矩阵法建立了一个开放态的圆柱形半导体量子线中的准平稳态和电子,空穴和激子寿命的理论,该半导体量子线包含一个被两个相同的反点包围的量子点(具有有限高度的势能和寿命障碍) 。计算并分析了β-HgS/β-CdS/β-HgS/β-CdS/β-HgS纳米层系统中的电子,空穴和激子的能谱和寿命。事实证明,量子点高度的增加会导致Breit-Wigner型准静态激子态的能量减少,并导致其寿命增加。激子态的寿命足够长,可以在实验中观察到这些态。 (c)2005年Pleiades Publishing,Inc.

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