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Kinetics of phase ordering in the O(n) model with a conserved order parameter

机译:O(n)模型中具有守序参数的相序动力学

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We study the phase-ordering dynamics of the O(n) model with a conserved order parameter for systems with topological defects. We present results from both cell dynamical simulations and predictions of a Gaussian auxiliary field (GAF) approximation for the XY (n = 2) model in two and three dimensions, and the Heisenberg (n = 3) model in three dimensions. We describe the results for the structure factor S(q) and growth law L(t) from simulations. The growth laws obtained are consistent with theoretical predictions based on energy-scaling arguments. The structure factor shows good dynamical scaling using a length extracted from its first moment. The simulations are compared with the theoretical predictions of the GAF for the scaling functions. Our results show that the GAF gives a good qualitative description of most features of the structure factor. However, it overestimates the amplitude of the Pored tail in the large-q limit. Moreover, for small q, the structure factor exhibits a q(2)-behaviour instead of the expected (generalized) Yeung result of q(4). [References: 31]
机译:我们研究具有拓扑缺陷的系统的具有守序参数的O(n)模型的相序动力学。我们从二维和三维的XY(n = 2)模型以及三维的海森堡(n = 3)模型的单元动力学模拟和高斯辅助场(GAF)近似预测中给出结果。我们通过仿真描述了结构因子S(q)和生长规律L(t)的结果。获得的增长定律与基于能量缩放论证的理论预测相一致。结构因子使用从其第一力矩提取的长度显示出良好的动态缩放。将模拟结果与GAF的缩放功能的理论预测进行了比较。我们的结果表明,GAF对结构因子的大多数特征给出了很好的定性描述。但是,它在大q限内高估了Pored尾部的幅度。此外,对于较小的q,结构因子表现为q(2)-行为,而不是q(4)的预期(广义)杨结果。 [参考:31]

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