论文标题

山谷调制和交错的Kagome Ferromagnets中木魔的单边运输

Valley Modulation and Single-Edge Transport of Magnons in Staggered Kagome Ferromagnets

论文作者

Xing, Yuheng, Chen, Hao, Xu, Ning, Li, Xiao, Zhang, Lifa

论文摘要

由于其无电荷特性,镁很有希望可以在没有焦耳加热的情况下实现无耗散运输,因此可能适用于节能设备。此外,作为许多木棒铁磁体的堆叠层的kagome晶格也在准片状光谱中表现出山谷结构,这很可能为木励激发增加了新的维度。在这里,我们研究了谷岩岩石晶格中的山谷磁杆和相关的山谷调制,并具有交流交流的交流和dzyaloshinskii-Moriya相互作用。交错的交流交互破坏了空间反演对称性,导致堕落的山谷以$ \ pm k $和随之而来的山谷磁棒效应。当进一步包括dzyaloshinskii-moriya的相互作用时,就会取消山谷退化。结果,实现了净镁异常霍尔效应和拓扑相变。更有趣的是,通过调整山谷分裂和激发频率,可以将kagome带中的热电流定位在一个边缘,以实现单边运输。此外,对于Kagmon晶格,边缘热电流包括三角形细胞结构内的局部循环贡献,以及平行于边缘流动的电流。这些发现为自旋和山谷的自由度和丰富节能宏伟的宏伟设备范式提供了全面发挥。

Owing to its charge-free property, magnon is highly promising to achieve dissipationless transport without Joule heating and thus potentially applicable to energy-efficient devices. Moreover, a kagome lattice, as stacking layers of many magnon ferromagnets, also exhibits valley structure in quasiparticle spectra, which are likely to add a new dimension to magnon excitation. Here, we investigate valley magnon and associated valley modulation in a kagome lattice, with staggered exchange interaction and Dzyaloshinskii-Moriya interaction. The staggered exchange interaction breaks spatial inversion symmetry, leading to gapped degenerate valleys at $\pm K$ and consequent valley magnon Hall effect. When the Dzyaloshinskii-Moriya interaction is further included, the valley degeneracy is lifted. As a result, net magnon anomalous Hall effect and topological phase transition are realized. More interestingly, by tuning valley splitting and excitation frequency, heat currents in the kagome strip can be localized at one edge to achieve single-edge transport. Besides, for the kagmon lattice, the edge heat currents include local circulating contribution within triangular fine structure, together with currents flowing parallel to the edges. These findings give full play to spin and valley degrees of freedom and enrich energy-efficient magnonic device paradigms.

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