Centre for Nanostructured Media, School of Maths and Physics, Queen's University Belfast, University Road, Belfast, N. Ireland, BT71NN, United Kingdom.
Nano Lett. 2013 Jun 12;13(6):2553-7. doi: 10.1021/nl400629m. Epub 2013 May 20.
In specific solid-state materials, under the right conditions, collections of magnetic dipoles are known to spontaneously form into a variety of rather complex geometrical patterns, exemplified by vortex and skyrmion structures. While theoretically, similar patterns should be expected to form from electrical dipoles, they have not been clearly observed to date: the need for continued experimental exploration is therefore clear. In this Letter we report the discovery of a rather complex domain arrangement that has spontaneously formed along the edges of a thin single crystal ferroelectric sheet, due to surface-related depolarizing fields. Polarization patterns are such that nanoscale "flux-closure" loops are nested within a larger mesoscale flux closure object. Despite the orders of magnitude differences in size, the geometric forms of the dual-scale flux closure entities are rather similar.
在特定的固态材料中,在适当的条件下,已知磁偶极子的集合可以自发地形成各种相当复杂的几何图案,例如涡旋和斯格明子结构。虽然从理论上讲,类似的图案应该可以从电偶极子中形成,但迄今为止尚未明确观察到:因此,需要继续进行实验探索。在这封信中,我们报告了在薄的单相铁电片的边缘由于表面相关去极化场而自发形成的一种相当复杂的畴排列的发现。由于极化模式,纳米级的“磁通封闭”环嵌套在较大的介观磁通封闭物体中。尽管在尺寸上有数量级的差异,但双尺度磁通封闭实体的几何形式相当相似。