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December 15, 1992Physical review. B, Condensed matter362 citations

Electron relaxation in quantum dots by means of Auger processes

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UBU. BockelmannTET. Egeler

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Abstract

The present theoretical work deals with the relaxation of hot electrons in quantum dots by Coulomb scattering with an electron-hole plasma. A random-phase approximation is used which includes single-particle and collective-plasma excitations. We discuss the influence of the dot size, plasma density, and temperature. The resulting transition rates are of the order of 10^12 s^-1 for a plasma density of 10^15 m^-2 in In₀. ₅₃Ga₀. ₄₇As/InP. In the presence of a dense electron-hole plasma, hot electrons can relax efficiently by Auger processes, even in small semiconductor quantum dots where the relaxation by phonon scattering is weak.

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Cite This Study

Bockelmann et al. (1992) studied this question.

synapsesocial.com/papers/6a6fef3fac440176ef2896dbhttps://doi.org/10.1103/physrevb.46.15574
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