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倾斜自旋序作为超快转换磁振子的平台。

Canted spin order as a platform for ultrafast conversion of magnons.

机构信息

Department of Physics, Lancaster University, Lancaster, UK.

Radboud University, Institute for Molecules and Materials, Nijmegen, The Netherlands.

出版信息

Nature. 2024 Jun;630(8016):335-339. doi: 10.1038/s41586-024-07448-3. Epub 2024 May 29.

Abstract

Traditionally, magnetic solids are divided into two main classes-ferromagnets and antiferromagnets with parallel and antiparallel spin orders, respectively. Although normally the antiferromagnets have zero magnetization, in some of them an additional antisymmetric spin-spin interaction arises owing to a strong spin-orbit coupling and results in canting of the spins, thereby producing net magnetization. The canted antiferromagnets combine antiferromagnetic order with phenomena typical of ferromagnets and hold great potential for spintronics and magnonics. In this way, they can be identified as closely related to the recently proposed new class of magnetic materials called altermagnets. Altermagnets are predicted to have strong magneto-optical effects, terahertz-frequency spin dynamics and degeneracy lifting for chiral spin waves (that is, all of the effects present in the canted antiferromagnets). Here, by utilizing these unique phenomena, we demonstrate a new functionality of canted spin order for magnonics and show that it facilitates mechanisms converting a magnon at the centre of the Brillouin zone into propagating magnons using nonlinear magnon-magnon interactions activated by an ultrafast laser pulse. Our experimental findings supported by theoretical analysis show that the mechanism is enabled by the spin canting.

摘要

传统上,磁性固体分为两类:铁磁体和反铁磁体,它们的自旋分别平行和反平行排列。虽然通常反铁磁体的磁化强度为零,但在其中一些反铁磁体中,由于强自旋轨道耦合,会出现额外的反对称自旋-自旋相互作用,导致自旋倾斜,从而产生净磁化强度。倾斜反铁磁体将反铁磁有序与铁磁体的典型现象结合在一起,在自旋电子学和磁子学方面具有巨大的潜力。通过这种方式,它们可以被认为与最近提出的称为交替磁体的新型磁性材料密切相关。预计交替磁体具有很强的磁光效应、太赫兹频率的自旋动力学和手性自旋波的简并消除(即,倾斜反铁磁体中存在的所有效应)。在这里,我们利用这些独特的现象,展示了倾斜自旋有序在磁子学中的新功能,并表明它促进了利用超快激光脉冲激活的非线性磁子-磁子相互作用,将布里渊区中心的磁子转换为传播磁子的机制。我们的实验结果得到了理论分析的支持,表明该机制是通过自旋倾斜实现的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47e4/11168928/e42ce181ba08/41586_2024_7448_Fig1_HTML.jpg

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