Abstract
We present total energy and force calculations for the (GaN) 1-x(ZnO)x alloy. Site-occupancy configurations are generated from Monte Carlo (MC) simulations, on the basis of a cluster expansion model proposed in a previous study. Local atomic coordinate relaxations of surprisingly large magnitude are found via density-functional calculations using a 432-atom periodic supercell, for three representative configurations at x = 0.5. These are used to generate bond-length distributions. The configurationally averaged composition- and temperature-dependent short-range order (SRO) parameters of the alloys are discussed. The entropy is approximated in terms of pair distribution statistics and thus related to SRO parameters. This approximate entropy is compared with accurate numerical values from MC simulations. An empirical model for the dependence of the bond length on the local chemical environments is proposed.
| Original language | English |
|---|---|
| Article number | 274204 |
| Journal | Journal of Physics Condensed Matter |
| Volume | 26 |
| Issue number | 27 |
| DOIs | |
| State | Published - Jul 9 2014 |
Keywords
- bondlength distribution
- semiconductor alloy
- shortrange order
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