Interface-driven phase separation in multifunctional materials: the case of GeMn ferromagnetic semiconductor
Materials Science
2012-03-26 v2
Abstract
We use extensive first principle simulations to show the major role played by interfaces in the mechanism of phase separation observed in semiconductor multifunctional materials. We make an analogy with the precipitation sequence observed in over-saturated AlCu alloys, and replace the Guinier-Preston zones in this new context. A new class of materials, the phases, is proposed to understand the formation of the coherent precipitates observed in the GeMn system. The interplay between formation and interface energies is analyzed for these phases and for the structures usually considered in the literature. The existence of the alpha phases is assessed with both theoretical and experimental arguments.
Keywords
Cite
@article{arxiv.1203.2417,
title = {Interface-driven phase separation in multifunctional materials: the case of GeMn ferromagnetic semiconductor},
author = {Emmanuel Arras and Frédéric Lançon and Ivetta Slipukhina and Éric Prestat and Mauro Rovezzi and Samuel Tardif and Andrey Titov and Pascale Bayle-Guillemaud and Francesco D'Acapito and André Barski and Vincent Favre-Nicolin and Matthieu Jamet and Joël Cibert and Pascal Pochet},
journal= {arXiv preprint arXiv:1203.2417},
year = {2012}
}