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Exploring the Complex World of Two-Dimensional Ordering with Three Modes

机译:用三种模式探索二维有序的复杂世界

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摘要

The world of two-dimensional crystals is of great significance for the design and study of structural and functional materials with novel properties. Here we examine the mechanisms governing the formation and dynamics of these crystalline or polycrystalline states and their elastic and plastic properties by constructing a generic multimode phase field crystal model. Our results demonstrate that a system with three competing length scales can order into all five Bravais lattices, and other more complex structures including honeycomb, kagome, and other hybrid phases. In addition, nonequilibrium phase transitions are examined to illustrate the complex phase behavior described by the model. This model provides a systematic path to predict the influence of lattice symmetry on both the structure and dynamics of crystalline and defected systems.
机译:二维晶体世界对于设计和研究具有新颖性质的结构和功能材料具有重要意义。在这里,我们通过构建通用的多模相场晶体模型,研究了控制这些晶态或多晶态的形成和动力学及其弹性和塑性的机制。我们的结果表明,具有三个相互竞争的长度尺度的系统可以排列成所有五个Bravais晶格,以及其他更复杂的结构,包括蜂窝,kagome和其他混合相。此外,检查了非平衡相变以说明模型描述的复杂相行为。该模型为预测晶格对称性对晶体和缺陷系统的结构和动力学的影响提供了系统的途径。

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