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Statistical Thermodynamics of Chiral Skyrmions in a Ferromagnetic Material

机译:铁磁性材料中手性Skyrmion的统计热力学

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摘要

Solitons are a challenging topic in condensed matter physics and materials science because of the interplay between their topological and physical properties and for the crucial role they play in topological phase transitions. Among them, chiral skyrmions hosted in ferromagnetic systems are axisymmetric solitonic states attracting a lot of attention for their dazzling physical properties and technological applications. In this paper, the equilibrium statistical thermodynamics of chiral magnetic skyrmions developing in a ferromagnetic material having the shape of an ultrathin cylindrical dot is investigated. This is accomplished by determining via analytical calculations for both Néel and Bloch skyrmions: (1) the internal energy of a single chiral skyrmion; (2) the partition function; (3) the free energy; (4) the pressure; and (5) the equation of state of a skyrmion diameters population. To calculate the thermodynamic functions for points (2)–(5), the derivation of the average internal energy and of the configurational entropy is crucial. Numerical calculations of the thermodynamic functions for points (1)–(5) are applied to Néel skyrmions. These results could advance the field of materials science with special regard to low-dimensional magnetic systems.
机译:孤子在凝聚态物理和材料科学中是一个具有挑战性的话题,因为它们的拓扑和物理特性之间相互作用,并且在拓扑相变中起着至关重要的作用。其中,铁磁系统中的手性天空离子是轴对称的孤子态,因其令人眼花physical乱的物理性能和技术应用而备受关注。在本文中,研究了在具有超薄圆柱点形状的铁磁材料中形成的手性磁性天生离子的平衡统计热力学。这可以通过分析计算确定Néel和Bloch天敌离子来完成:(1)单一手性天敌离子的内部能量; (2)分区功能; (3)自由能; (4)压力; (5)天蝎子直径种群的状态方程。为了计算点(2)-(5)的热力学函数,推导平均内部能量和构型熵至关重要。点(1)–(5)的热力学函数的数值计算被应用于Néelskyrmions。这些结果可以推动材料科学领域的发展,特别是对低维磁性系统的关注。

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