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Anisotropic Defect-Mediated Melting of Two-Dimensional Colloidal Crystals

机译:各向异性缺陷介导的二维胶体晶体的熔化

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The melting transition of anisotropic two-dimensional (2D) crystals is studied in a model system of superparamagnetic colloids. The anisotropy of the induced dipole-dipole interaction is varied by tilting the external magnetic field off the normal to the particle plane. By analyzing the time-dependent Lindemann parameter as well as translational and orientational order we observe a 2D smecticlike phase. The Kosterlitz-Thouless-Halperin-Nelson-Young scenario of isotropic melting is modified: dislocation pairs and dislocations appear with different probabilities depending on their orientation with respect to the in-plane field.
机译:在超顺磁性胶体模型系统中研究了各向异性二维(2D)晶体的熔融转变。通过使外部磁场偏离粒子平面的法线倾斜,可以改变感应偶极-偶极相互作用的各向异性。通过分析时间相关的Lindemann参数以及平移和取向顺序,我们观察到了二维近晶状相。各向同性熔化的Kosterlitz-Thouless-Halperin-Nelson-Young方案已被修改:位错对和位错的出现概率取决于它们相对于面内场的方向。

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