Wahab Dina Abdul, Augustin Mathias, Valero Samuel Manas, Kuang Wenjun, Jenkins Sarah, Coronado Eugenio, Grigorieva Irina V, Vera-Marun Ivan J, Navarro-Moratalla Efrén, Evans Richard F L, Novoselov Kostya S, Santos Elton J G
School of Mathematics and Physics, Queen's University, Belfast, BT7 1NN, UK.
Instituto de Ciencia Molecular, Universidad de Valencia, Calle Catedrático José Beltrán 2, 46980, Paterna, Spain.
Adv Mater. 2021 Feb;33(5):e2004138. doi: 10.1002/adma.202004138. Epub 2020 Dec 21.
Higher-order exchange interactions and quantum effects are widely known to play an important role in describing the properties of low-dimensional magnetic compounds. Here, the recently discovered 2D van der Waals (vdW) CrI is identified as a quantum non-Heisenberg material with properties far beyond an Ising magnet as initially assumed. It is found that biquadratic exchange interactions are essential to quantitatively describe the magnetism of CrI but quantum rescaling corrections are required to reproduce its thermal properties. The quantum nature of the heat bath represented by discrete electron-spin and phonon-spin scattering processes induces the formation of spin fluctuations in the low-temperature regime. These fluctuations induce the formation of metastable magnetic domains evolving into a single macroscopic magnetization or even a monodomain over surface areas of a few micrometers. Such domains display hybrid characteristics of Néel and Bloch types with a narrow domain wall width in the range of 3-5 nm. Similar behavior is expected for the majority of 2D vdW magnets where higher-order exchange interactions are appreciable.
高阶交换相互作用和量子效应在描述低维磁性化合物的性质方面起着重要作用,这是广为人知的。在此,最近发现的二维范德华(vdW)CrI被确定为一种量子非海森堡材料,其性质远超出最初所假设的伊辛磁体。研究发现,双二次交换相互作用对于定量描述CrI的磁性至关重要,但需要量子重标度修正来重现其热性质。由离散电子 - 自旋和声子 - 自旋散射过程所代表的热浴的量子性质,在低温 regime 诱导了自旋涨落的形成。这些涨落在几微米的表面积上诱导了亚稳磁畴的形成,这些磁畴演变成单一的宏观磁化甚至单畴。此类磁畴呈现出纳尔和布洛赫类型的混合特征,畴壁宽度狭窄,在3 - 5纳米范围内。对于大多数高阶交换相互作用显著的二维vdW磁体,预计会有类似行为。