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Size Effect of a Negatively Charged Exciton in a Two-Dimensional Quantum Dot

Size Effect of a Negatively Charged Exciton in a Two-Dimensional Quantum Dot
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摘要 In this paper we study a negatively charged exciton (NCE), which is trapped by a two-dimensional (2D) parabolic potential. By using matrix diagonalization techniques, the correlation energies of the low-lying states with L=0, 1, and 2 are calculated as a function of confinement strength. We find that the size effects of different states are different. This phenomenon can be explained as a hidden symmetry, which is originated purely from symmetry. Based on symmetry, the features of the low-lying states are discussed in the influence of the 2D parabolic potential well. It is found that the confinement may cause accidental degeneracies between levels with different low-excited states. It is shown that the effect of quantum confinement on the binding energy of the heavy hole is stronger than that of a light hole.
机构地区 Department of Physics
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第2期353-357,共5页 理论物理通讯(英文版)
基金 supported by National Natural Science Foundation of China under Grant No.10775035
关键词 quantum dot charged exciton size effect energy spectrum SYMMETRY 负电荷 二维 尺寸效应 激子 量子点 量子限域效应 对角化技巧 对称性
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