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蜂窝状磁性晶格上胶体二聚体的几何阻挫

Geometric Frustration of Colloidal Dimers on a Honeycomb Magnetic Lattice.

作者信息

Tierno Pietro

机构信息

Estructura i Constituents de la Matèria, Universitat de Barcelona, 08028 Barcelona, Spain and Institut de Nanociència i Nanotecnologia, Universitat de Barcelona, 08028 Barcelona, Spain.

出版信息

Phys Rev Lett. 2016 Jan 22;116(3):038303. doi: 10.1103/PhysRevLett.116.038303.

Abstract

We study the phase behavior and the collective dynamics of interacting paramagnetic colloids assembled above a honeycomb lattice of triangular shaped magnetic minima. A frustrated colloidal molecular crystal is realized when filling these potential minima with exactly two particles per pinning site. External in-plane rotating fields are used to anneal the system into different phases, including long range ordered stripes, random fully packed loops, labyrinth and disordered states. At a higher amplitude of the annealing field, the dimer lattice displays a two-step melting transition where the initially immobile dimers perform first localized rotations and later break up by exchanging particles across consecutive lattice minima.

摘要

我们研究了在三角形磁极小值的蜂窝晶格上方组装的相互作用顺磁胶体的相行为和集体动力学。当每个钉扎位点恰好填充两个粒子时,就实现了一种受挫的胶体分子晶体。使用外部平面内旋转场将系统退火到不同的相,包括长程有序条纹、随机完全填充的环、迷宫状和无序状态。在退火场的较高振幅下,二聚体晶格显示出两步熔化转变,其中最初不动的二聚体首先进行局部旋转,然后通过在连续的晶格极小值之间交换粒子而分解。

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