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XXZ 型反铁磁单层 NiPS 中磁有序的抑制。

Suppression of magnetic ordering in XXZ-type antiferromagnetic monolayer NiPS.

机构信息

Department of Physics, Sogang University, Seoul, 04107, Korea.

Center for Correlated Electron Systems, Institute for Basic Science, Seoul, 08826, Korea.

出版信息

Nat Commun. 2019 Jan 21;10(1):345. doi: 10.1038/s41467-018-08284-6.

Abstract

How a certain ground state of complex physical systems emerges, especially in two-dimensional materials, is a fundamental question in condensed-matter physics. A particularly interesting case is systems belonging to the class of XY Hamiltonian where the magnetic order parameter of conventional nature is unstable in two-dimensional materials leading to a Berezinskii-Kosterlitz-Thouless transition. Here, we report how the XXZ-type antiferromagnetic order of a magnetic van der Waals material, NiPS, behaves upon reducing the thickness and ultimately becomes unstable in the monolayer limit. Our experimental data are consistent with the findings based on renormalization-group theory that at low temperatures a two-dimensional XXZ system behaves like a two-dimensional XY one, which cannot have a long-range order at finite temperatures. This work provides the experimental examination of the XY magnetism in the atomically thin limit and opens opportunities of exploiting these fundamental theorems of magnetism using magnetic van der Waals materials.

摘要

复杂物理系统的特定基态是如何出现的,特别是在二维材料中,这是凝聚态物理中的一个基本问题。一个特别有趣的情况是属于 XY 哈密顿量类的系统,其中常规性质的磁有序参数在二维材料中是不稳定的,导致 Berezinskii-Kosterlitz-Thouless 相变。在这里,我们报告了磁范德华材料 NiPS 的 XXZ 型反铁磁序如何在厚度减小的情况下发生变化,最终在单层极限下变得不稳定。我们的实验数据与重整化群理论的发现一致,即在低温下,二维 XXZ 系统的行为类似于二维 XY 系统,在有限温度下不能有长程有序。这项工作提供了对原子薄极限中 XY 磁性的实验检验,并为使用磁范德华材料利用这些磁性基本定理开辟了机会。

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