Energy renormalization of exciton complexes in GaAs quantum dots
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概要
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Using GaAs/AlGaAs self-assembled quantum dots we study the few-particle dynamics of fully confined systems, which is associated with purely Coulomb interaction and is not affected by the internal strain field. Systematic evolution in the binding energies of positive and negative trions, as well as biexcitons, with dot size is interpreted in terms of a balance between the Hartree mean-field corrections on single-particle states and the interparticle correlations which lead to a nonseparable dynamics. The experimental behaviors are well reproduced by exact many-body calculations within the framework of the quantum Monte Carlo approach.
- 2010-11-15
著者
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土家 琢磨
北大院工
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Mano Takaaki
Natl Inst Mat Sci
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Mano Takaaki
National Inst. Materials Sci. (nims) Ibaraki Jpn
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Kuroda Takashi
Natl Inst Mat Sci
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Sakoda K
Hokkaido Univ. Sapporo Jpn
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Sakoda Kazuaki
Tsukuba Univ.:natl Inst Mat Sci
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Sakoda Kazuaki
Research Institute For Electronic Science Hokkaido University
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Abbarchi Marco
National Institute For Material Science
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Sakoda Kazuaki
Nanomaterials Laboratory National Institute For Materials Science (nims)
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Kuroda Takashi
Department Of Applied Physics Tokyo Institute Of Technology
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Mano Takaaki
National Inst. For Materials Sci. Ibaraki Jpn
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Sakoda Kazuaki
Quantum Dot Research Center National Institute For Materials Science
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Tsuchiya Takashi
Department Of Applied Physics School Of Science And Engineering Waseda University
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Sakoda Kazuaki
Tsukuba Univ:natl Inst Mat Sci
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TSUCHIYA Takashi
Department of Applied Physics, Waseda University
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