Zhou Zhichao, Wang Huiqian, Li Xiao
School of Physics and Technology, Nanjing Normal University, Nanjing 210023, China.
Center for Quantum Transport and Thermal Energy Science, Nanjing Normal University, Nanjing 210023, China.
Nano Lett. 2024 Sep 18;24(37):11497-11503. doi: 10.1021/acs.nanolett.4c02849. Epub 2024 Sep 4.
Two-dimensional valleys and magnetism are rising areas with intriguing properties and practical uses in advanced information technology. By coupling valleys to collinear magnetism, valley degeneracy is lifted in a large number of magnetic valley materials to exploit the valley degree of freedom. Beyond collinear magnetism, new coupling modes between valley and magnetism are few but highly desirable. By tight-binding calculations of a breathing Kagome lattice, we demonstrate a tunable valley structure and valley-contrasting physical properties in noncollinear antiferromagnets. Distinct from collinear magnetism, noncollinear antiferromagnetic order enables valley splittings even without spin-orbit coupling. Both the canting and azimuthal angles of magnetic moments can be used as experimentally accessible knobs to tune valley splittings. Our first-principles calculations of the FeCO-silicene-FeCO heterostructure also exhibit tunable valley splittings in noncollinear antiferromagnetism, agreeing with our tight-binding results. Our work paves avenues for designing novel magnetic valley materials and energy-efficient valleytronic devices based on noncollinear magnetism.
二维能谷和磁性是新兴领域,在先进信息技术中具有引人入胜的特性和实际用途。通过将能谷与共线磁性耦合,大量磁性能谷材料中的能谷简并被消除,从而利用能谷自由度。除了共线磁性,能谷与磁性之间的新耦合模式虽少但极具吸引力。通过对呼吸式 Kagome 晶格的紧束缚计算,我们展示了非共线反铁磁体中可调谐的能谷结构和能谷对比物理性质。与共线磁性不同,非共线反铁磁序即使在没有自旋轨道耦合的情况下也能实现能谷分裂。磁矩的倾斜角和方位角都可以用作实验上可调节的旋钮来调整能谷分裂。我们对 FeCO-硅烯-FeCO 异质结构的第一性原理计算也显示了非共线反铁磁性中可调谐的能谷分裂,与我们的紧束缚结果一致。我们的工作为基于非共线磁性设计新型磁性能谷材料和节能能谷电子器件开辟了道路。