CEA, DEN, Service de Recherches de Métallurgie Physique, Gif-sur-Yvette, France.
Phys Rev Lett. 2012 Jan 13;108(2):025501. doi: 10.1103/PhysRevLett.108.025501. Epub 2012 Jan 11.
A three-dimensional periodic structure is proposed for self-interstitial clusters in body-centered-cubic metals, as opposed to the conventional two-dimensional loop morphology. The underlying crystal structure corresponds to the C15 Laves phase. Using density functional theory and interatomic potential calculations, we demonstrate that in α-iron these C15 aggregates are highly stable and immobile and that they exhibit large antiferromagnetic moments. They form directly in displacement cascades, and they can grow by capturing self-interstitials. They thus constitute an important new element to account for when predicting the microstructural evolution of iron base materials under irradiation.
提出了一种体心立方金属中自间隙原子团簇的三维周期性结构,与传统的二维环形态相反。其基础晶体结构与 C15 型 Laves 相相对应。通过密度泛函理论和原子间势计算,我们证明了在α-铁中,这些 C15 聚集体是高度稳定和不可移动的,并且具有较大的反铁磁矩。它们直接在位移激波中形成,并且可以通过捕获自间隙原子而生长。因此,它们构成了预测辐照下铁基材料微观结构演化时需要考虑的一个重要新元素。