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- W2747430114 abstract "The effect of the electron–phonon interaction on an electron bound to a hydrogenic impurity in a three-dimensional (3D) anisotropic quantum dot (QD) is studied theoretically. We use the Landau–Pekar variational approach to calculate the binding energy of ground state (GS) and first-excited state (ES) with considering electron–phonon interaction. The expressions of the GS and ES energies under investigation depict a rich variety of dependent relationship with the variational parameters in three different limiting cases. Numerical calculations were performed for ZnSe QDs with different confinement lengths in the xy-plane and the z-direction, respectively. It is illustrated that binding energies of impurity polarons corresponding to each level are larger in small QDs. Furthermore, the contribution to binding energy from phonon is about 15% of the total binding energy." @default.
- W2747430114 created "2017-08-31" @default.
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- W2747430114 date "2018-01-16" @default.
- W2747430114 modified "2023-09-27" @default.
- W2747430114 title "Hydrogenic impurity bound polaron in an anisotropic quantum dot" @default.
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- W2747430114 doi "https://doi.org/10.1142/s0217979218500066" @default.
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