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- W2061576470 abstract "The influence of a magnetic field on the hole energy spectra of uniform and multilayer semiconductor nanocrystals is studied. The calculations are performed within the k · p method and envelope function approximation. The valence subband mixing is taken into account by considering a four-band Hamiltonian. It is found that the influence of a magnetic field depends strongly on the nanocrystal size and composition. Several phenomena, reported recently for electrons in multishell nanocrystals in a magnetic field, like crossover from confinement in the external shell to the internal core in quantum dot quantum barrier structures or spatial polar separation of the charge density in quantum dot quantum well systems, are also observed for holes. The calculated optical electron–hole transitions in small uniform spherical nanocrystals reveal that the δlL, selection rule, forbidding at B = 0 electron–hole transitions between states of different orbital angular momentum, is also approximately fulfilled, even at strong magnetic fields." @default.
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- W2061576470 date "2002-11-20" @default.
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- W2061576470 title "Hole energy structure of multishell nanocrystals in a magnetic field" @default.
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- W2061576470 doi "https://doi.org/10.1088/0953-8984/14/47/326" @default.
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