Wu Kuo-An, Adland Ari, Karma Alain
Department of Physics and Center for Interdisciplinary Research on Complex Systems, Northeastern University, Boston, Massachusetts 02115, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Jun;81(6 Pt 1):061601. doi: 10.1103/PhysRevE.81.061601. Epub 2010 Jun 23.
We develop and analyze a two-mode phase-field-crystal model to describe fcc ordering. The model is formulated by coupling two different sets of crystal density waves corresponding to <111> and <200> reciprocal lattice vectors, which are chosen to form triads so as to produce a simple free-energy landscape with coexistence of crystal and liquid phases. The feasibility of the approach is demonstrated with numerical examples of polycrystalline and (111) twin growth. We use a two-mode amplitude expansion to characterize analytically the free-energy landscape of the model, identifying parameter ranges where fcc is stable or metastable with respect to bcc. In addition, we derive analytical expressions for the elastic constants for both fcc and bcc. Those expressions show that a nonvanishing amplitude of [200] density waves is essential to obtain mechanically stable fcc crystals with a nonvanishing tetragonal shear modulus (C11-C12)/2. We determine the model parameters for specific materials by fitting the peak liquid structure factor properties and solid-density wave amplitudes following the approach developed for bcc [K.-A. Wu and A. Karma, Phys. Rev. B 76, 184107 (2007)]. This procedure yields reasonable predictions of elastic constants for both bcc Fe and fcc Ni using input parameters from molecular dynamics simulations. The application of the model to two-dimensional square lattices is also briefly examined.
我们开发并分析了一种双模相场晶体模型来描述面心立方(fcc)有序化。该模型通过耦合两组分别对应于<111>和<200>倒易晶格矢量的不同晶体密度波来构建,这些密度波被选取以形成三元组,从而产生一个具有晶体和液相共存的简单自由能图景。通过多晶和(111)孪晶生长的数值示例证明了该方法的可行性。我们使用双模振幅展开来解析表征模型的自由能图景,确定面心立方相对于体心立方(bcc)稳定或亚稳的参数范围。此外,我们推导了面心立方和体心立方弹性常数的解析表达式。这些表达式表明,[200]密度波的非零振幅对于获得具有非零四方切变模量(C11 - C12)/2的机械稳定面心立方晶体至关重要。我们按照为体心立方[K.-A. Wu和A. Karma,《物理评论B》76,184107(2007)]开发的方法,通过拟合峰值液体结构因子特性和固体密度波振幅来确定特定材料的模型参数。该过程使用分子动力学模拟的输入参数,对面心立方镍和体心立方铁的弹性常数给出了合理的预测。还简要研究了该模型在二维正方形晶格中的应用。