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- W1972045090 abstract "The generalized boundary conditions for the envelope wave function that take into account the real structure of an interface were used to investigate the hole spectrum of the semiconductor quantum dot embedded in an insulator matrix. An essential influnece of the interface levels on the hole spectrum has been demonstrated. Such levels could exist at the top of the valuence band. It is found that boundary conditions usually applied, wherein all components of the envelope wave function vanish at the interface, can be used only in the absence of the interface levels close to the band edge. @S0163-1829~99!51644-5# To determine the electron states in semiconductor quantum dots, the envelope function approximation is applied. 1 The envelope wave functions are usually supposed to be vanished at the interface in order to describe the quantum confinement. If the intervalley or interband degeneracy of the electron spectrum occurs in the semiconductor, then each component of the envelope wave function is assumed to be vanished at the interface. 1‐3 The last statement, however, needs to be justified. Indeed, the boundary condition c50 for the proper ~not envelope! wave function arises from the solution of the" @default.
- W1972045090 created "2016-06-24" @default.
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- W1972045090 date "1999-11-15" @default.
- W1972045090 modified "2023-09-24" @default.
- W1972045090 title "Electron spectrum of a semiconductor quantum dot influenced by an interface" @default.
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- W1972045090 doi "https://doi.org/10.1103/physrevb.60.r13970" @default.
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