Sokrates T. Pantelides, Annabella Selloni, et al.
Solid-State Electronics
We report self-consistent Green's-function total-energy calculations which provide, for the first time, a firm theoretical framework for understanding the microscopic mechanisms of atomic diffusion in Si. We find that the self-interstitial has negative-U properties, roughly the same formation energy at several sites, small migration barriers, and charge-state instabilities that allow athermal migration along several paths. We also find that both vacancies and interstitials mediate self-diffusion and reconcile contrasting low- and high-temperature data. © 1984 The American Physical Society.
Sokrates T. Pantelides, Annabella Selloni, et al.
Solid-State Electronics
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Physical Review Letters
Roberto Car, Paul J. Kelly, et al.
Physical Review Letters
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