arXiv · 2111.03387
Electronic correlations and Fermi liquid behavior of intermediate-band states in titanium-doped silicon
Abstract
We study the nature of the electronic states in the intermediate band formed by interstitial titanium in silicon. Our single-site description combines effects of electronic correlations, captured by dynamical mean-field theory, and disorder, modeled using the coherent potential approximation and the typical medium mean-field theory. For all studied concentrations an extended metallic state with a strongly depleted density of states at the Fermi level is obtained. The self-energy is characteristic to Fermi-liquids and for certain temperatures reveals the existence of coherent quasi-particles.
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A. Östlin, L. Chioncel. 2021-11-05. Electronic correlations and Fermi liquid behavior of intermediate-band states in titanium-doped silicon. https://doi.org/10.1103/physrevb.104.l201201
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