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On an exciton with a spatially separated electron and hole in quasi-zero-dimensional semiconductor nanosystems
Authors:S. I. Pokutnyi
Affiliation:1. Kurdyumov Institute for Metal Physics, National Academy of Sciences, Vernadsky Blvd. 36, Kyiv, 03080, Ukraine
Abstract:The theory of an exciton with a spatially separated electron and hole (the hole is in the quantum dot volume, and the electron is localized at the outer spherical quantum dot-dielectric matrix interface) is developed within the modified effective mass method. The effect of significantly increasing the exciton-binding energy in quantum dots of zinc selenide, synthesized in a borosilicate glass matrix, relative to that in a zinc-selenide single crystal is revealed.
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