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Order by disorder in the antiferromagnetic Ising model on an elastic triangular lattice

机译:弹性三角晶格上反铁磁Ising模型中的无序排序

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摘要

Geometrically frustrated materials have a ground-state degeneracy that may be lifted by subtle effects, such as higher-order interactions causing small energetic preferences for ordered structures. Alternatively, ordering may result from entropic differences between configurations in an effect termed order by disorder. Motivated by recent experiments in a frustrated colloidal system in which ordering is suspected to result from entropy, we consider in this paper the antiferromagnetic Ising model on a deformable triangular lattice. We calculate the displacements exactly at the microscopic level and, contrary to previous studies, find a partially disordered ground state of randomly zigzagging stripes. Each such configuration is deformed differently and thus has a unique phonon spectrum with distinct entropy, lifting the degeneracy at finite temperature. Nonetheless, due to the free-energy barriers between the ground-state configurations, the system falls into a disordered glassy state.
机译:几何受阻的材料具有基态退化,这种退化可能会因微妙的影响而升高,例如高阶相互作用会导致对有序结构的能量偏好较小。替代地,排序可以由配置之间的熵差导致,其被称为无序排序的效果。根据最近在受挫的胶体系统中进行实验的动机,在该系统中,有序是由熵引起的,我们在本文中考虑了可变形三角晶格上的反铁磁伊辛模型。我们精确地在微观水平上计算位移,并且与先前的研究相反,发现了随机曲折条纹的部分无序基态。每个这样的构型都会发生不同的变形,因此具有具有独特熵的独特声子光谱,从而在有限温度下提升了简并性。尽管如此,由于基态配置之间的自由能壁垒,系统陷入了无序的玻璃态。

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