Tyulkina Irina V, Goldobin Denis S, Klimenko Lyudmila S, Poperechny Igor S, Raikher Yuriy L
Institute of Continuous Media Mechanics, UB RAS, Academician Korolev Street 1, Perm 614068, Russia.
Department of Theoretical Physics, Perm State University, Bukirev Street 15, Perm 614990, Russia.
Philos Trans A Math Phys Eng Sci. 2020 May 15;378(2171):20190259. doi: 10.1098/rsta.2019.0259. Epub 2020 Apr 13.
The problem of magnetic transitions between the low-temperature (macrospin ordered) phases in two-dimensional XY arrays is addressed. The system is modelled as a plane structure of identical single-domain particles arranged in a square lattice and coupled by the magnetic dipole-dipole interaction; all the particles possess a strong easy-plane magnetic anisotropy. The basic state of the system in the considered temperature range is an antiferromagnetic (AF) stripe structure, where the macrospins (particle magnetic moments) are still involved in thermofluctuational motion: the superparamagnetic blocking temperature is lower than that () of the AF transition. The description is based on the stochastic equations governing the dynamics of individual magnetic moments, where the interparticle interaction is added in the mean-field approximation. With the technique of a generalized Ott-Antonsen theory, the dynamics equations for the order parameters (including the macroscopic magnetization and the AF order parameter) and the partition function of the system are rigorously obtained and analysed. We show that inside the temperature interval of existence of the AF phase, a static external field tilted to the plane of the array is able to induce first-order phase transitions from AF to ferromagnetic state; the phase diagrams displaying stable and metastable regions of the system are presented. This article is part of the theme issue 'Patterns in soft and biological matters'.
研究了二维XY阵列中低温(宏观自旋有序)相之间的磁跃迁问题。该系统被建模为一个由相同的单畴粒子组成的平面结构,这些粒子排列在正方形晶格中,并通过磁偶极-偶极相互作用耦合;所有粒子都具有很强的易平面磁各向异性。在所考虑的温度范围内,系统的基本状态是反铁磁(AF)条纹结构,其中宏观自旋(粒子磁矩)仍参与热涨落运动:超顺磁阻挡温度低于AF转变温度()。描述基于控制单个磁矩动力学的随机方程,其中粒子间相互作用采用平均场近似添加。利用广义Ott-Antonsen理论技术,严格推导并分析了序参量(包括宏观磁化强度和AF序参量)的动力学方程以及系统的配分函数。我们表明,在AF相存在的温度区间内,倾斜于阵列平面的静态外场能够诱导从AF到铁磁态的一级相变;给出了显示系统稳定和亚稳区域的相图。本文是主题为“软物质和生物物质中的模式”的一部分。