Gómez Leopoldo R, Vega Daniel A
Department of Physics and Instituto de Física del Sur, IFISUR (UNS-CONICET), Além 1253, (8000) Bahía Blanca, Argentina.
Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Feb;83(2 Pt 1):021501. doi: 10.1103/PhysRevE.83.021501. Epub 2011 Feb 10.
A general Landau's free energy functional is used to study the dynamics of crystallization during liquid-solid spinodal decomposition (SD). The strong length scale selectivity imposed during the early stage of SD induces the appearance of small precursors for crystallization with icosahedral order. These precursors grow in densely packed clusters of tetrahedra through the addition of new particles. As the average size of the amorphous nuclei becomes large enough to reduce geometric frustration, crystalline particles with a body-centered cubic symmetry heterogeneously nucleate on the growing clusters. The volume fraction of the crystalline phase is strongly dependent on the depth of quench. At deep quenches, the SD mechanism produces amorphous structures arranged in dense polytetrahedral aggregates.
一个通用的朗道自由能泛函被用于研究液 - 固亚稳分解(SD)过程中的结晶动力学。在SD早期阶段施加的强长度尺度选择性诱导了具有二十面体有序的小结晶前驱体的出现。这些前驱体通过添加新粒子在紧密堆积的四面体簇中生长。当非晶核的平均尺寸变得足够大以减少几何失配时,具有体心立方对称性的晶体颗粒在生长的簇上异质形核。晶相的体积分数强烈依赖于淬火深度。在深度淬火时,SD机制产生排列成密集多面体聚集体的非晶结构。