Journal article

Bridging the gap between atomic microstructure and electronic properties of alloys: The case of (In,Ga)N

JA Chan, JZ Liu, A Zunger

Physical Review B Condensed Matter and Materials Physics | AMER PHYSICAL SOC | Published : 2010

Abstract

The atomic microstructure of alloys is rarely perfectly random, instead exhibiting differently shaped precipitates, clusters, zigzag chains, etc. While it is expected that such microstructural features will affect the electronic structures (carrier localization and band gaps), theoretical studies have, until now, been restricted to investigate either perfectly random or artificial "guessed" microstructural features. In this paper, we simulate the alloy microstructures in thermodynamic equilibrium using the static Monte Carlo method and study their electronic structures explicitly using a pseudopotential supercell approach. In this way, we can bridge atomic microstructures with their electron..

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University of Melbourne Researchers

Grants

Awarded by U.S. Department of Energy, Office of Science under NREL


Funding Acknowledgements

We gratefully acknowledge Voicu Popescu and Mayeul d'Avezac for discussions on the electronic structure and cluster expansion of InGaN. This work was funded by the U.S. Department of Energy, Office of Science under NREL Contract No. DE-AC36-08GO28308.