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有限尺寸偶极开罗晶格的低能态、基态和可变挫折。

Low-energy states, ground states, and variable frustrations of the finite-size dipolar Cairo lattices.

作者信息

Makarova Kseniia, Strongin Vladislav, Titovets Iuliia, Syrov Aleksandr, Zinchenko Ivan, Samoylov Victor, Hofhuis Kevin, Saccone Michael, Makarov Aleksandr, Farhan Alan, Nefedev Konstantin

机构信息

School of Natural Sciences, Far Eastern Federal University, Vladivostok, Russky Island, 10 Ajax Bay, 690922, Russian Federation.

Institute of Applied Mathematics, Far Eastern Branch, Russian Academy of Science, Vladivostok, Radio 7, 690041, Russian Federation.

出版信息

Phys Rev E. 2021 Apr;103(4-1):042129. doi: 10.1103/PhysRevE.103.042129.

Abstract

To investigate the influence of geometric frustration on the properties of low-energy configurations of systems of ferromagnetic nanoislands located on the edges of the Cairo lattice, the model of interacting Ising-like magnetic dipoles is used. By the method of complete enumeration, the densities of states of the Cairo pentagonal lattices of a finite number of Ising-like point dipoles are calculated. The calculated ground and low-energy states for systems with a small number of dipoles can be used to solve the problem of searching for the ground states in a system with a relatively large number of dipoles. It is shown that the ground-state energy of the Cairo pentagonal lattices exhibits nonmonotonic behavior on one of the lattice parameters. The lattice parameters can be used to control the degree of geometric frustration. For the studied lattices of a finite number of Ising dipoles on the Cairo lattice in the ground-state configurations, a number of closed pentagons is observed, which are different from the obtained maximum closed pentagons. The magnetic order in the ground-state configurations obeys the ice rule and the quasi-ice rules.

摘要

为了研究几何阻挫对位于开罗晶格边缘的铁磁纳米岛系统低能构型性质的影响,采用了类伊辛磁偶极子相互作用模型。通过完全枚举法,计算了有限数量类伊辛点偶极子的开罗五角晶格的态密度。少量偶极子系统的计算基态和低能态可用于解决寻找相对大量偶极子系统基态的问题。结果表明,开罗五角晶格的基态能量在其中一个晶格参数上呈现非单调行为。晶格参数可用于控制几何阻挫程度。对于开罗晶格上有限数量类伊辛偶极子的研究晶格,在基态构型中观察到一些封闭五边形,它们与所得到的最大封闭五边形不同。基态构型中的磁序遵循冰规则和准冰规则。

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