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磁性斯格明子晶格的热滞现象与有序行为。

Thermal Hysteresis and Ordering Behavior of Magnetic Skyrmion Lattices.

作者信息

McCray Arthur R C, Li Yue, Basnet Rabindra, Pandey Krishna, Hu Jin, Phelan Daniel P, Ma Xuedan, Petford-Long Amanda K, Phatak Charudatta

机构信息

Materials Science Division, Argonne National Laboratory, Lemont, Illinois 60439, United States.

Applied Physics Program, Northwestern University, Evanston, Illinois 60208, United States.

出版信息

Nano Lett. 2022 Oct 12;22(19):7804-7810. doi: 10.1021/acs.nanolett.2c02275. Epub 2022 Sep 21.

Abstract

The physics of phase transitions in two-dimensional (2D) systems underpins research in diverse fields including statistical mechanics, nanomagnetism, and soft condensed matter. However, many aspects of 2D phase transitions are still not well understood, including the effects of interparticle potential, polydispersity, and particle shape. Magnetic skyrmions are chiral spin-structure quasi-particles that form two-dimensional lattices. Here, we show, by real-space imaging using cryo-Lorentz transmission electron microscopy coupled with machine learning image analysis, the ordering behavior of Néel skyrmion lattices in van der Waals FeGeTe. We demonstrate a distinct change in the skyrmion size distribution during field-cooling, which leads to a loss of lattice order and an evolution of the skyrmion liquid phase. Remarkably, the lattice order is restored during field heating and demonstrates a thermal hysteresis. This behavior is explained by the skyrmion energy landscape and demonstrates the potential to control the lattice order in 2D phase transitions.

摘要

二维(2D)系统中的相变物理是统计力学、纳米磁学和软凝聚态物质等多个领域研究的基础。然而,二维相变的许多方面仍未得到很好的理解,包括粒子间势、多分散性和粒子形状的影响。磁斯格明子是形成二维晶格的手性自旋结构准粒子。在这里,我们通过使用低温洛伦兹透射电子显微镜结合机器学习图像分析的实空间成像,展示了范德华FeGeTe中尼尔型斯格明子晶格的有序行为。我们证明了在场冷过程中斯格明子尺寸分布的明显变化,这导致晶格有序性的丧失和斯格明子液相的演化。值得注意的是,晶格有序性在场加热过程中恢复,并表现出热滞现象。这种行为可以用斯格明子能量景观来解释,并展示了在二维相变中控制晶格有序性的潜力。

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