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Symmetry breaking in smectics and surface models of their singularities

机译:对称性和奇异性表面模型中的对称性破裂

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摘要

The homotopy theory of topological defects in ordered media fails to completely characterize systems with broken translational symmetry. We argue that the problem can be understood in terms of the lack of rotational Goldstone modes in such systems and provide an alternate approach that correctly accounts for the interaction between translations and rotations. Dislocations are associated, as usual, with branch points in a phase field, whereas disclinations arise as critical points and singularities in the phase field. We introduce a three-dimensional model for two-dimensional smectics that clarifies the topology of disclinations and geometrically captures known results without the need to add compatibility conditions. Our work suggests natural generalizations of the two-dimensional smectic theory to higher dimensions and to crystals.
机译:有序介质中拓扑缺陷的同伦理论不能完全描述具有平移对称性的系统。我们认为,可以从此类系统中缺乏旋转戈德斯通模式的角度来理解问题,并提供一种替代方法来正确说明平移和旋转之间的相互作用。像往常一样,位错与相场中的分支点相关,而错位则作为相场中的临界点和奇点出现。我们为二维电子显微镜引入了一个三维模型,该模型阐明了旋错的拓扑结构,并在不需要添加兼容性条件的情况下以几何方式捕获了已知结果。我们的工作提出了二维近晶理论对更高维度和晶体的自然概括。

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