论文标题
部分可观测时空混沌系统的无模型预测
Spin waves and magnetic exchange Hamiltonian in CrSBr
论文作者
论文摘要
CRSBR是一种空气稳定的2D Van der Waals半导体磁铁,具有巨大的技术希望,但其原子尺度的磁相互作用(用于高频切换的重要信息)却知之甚少。我们提出了一项实验研究,以确定CRSBR磁交换Hamiltonian和Bulk Magnon Spectrum。我们使用单晶中子衍射确认了$ - 类型的抗铁磁序列。我们还使用非弹性中子散射测量了磁通分散体,并严格地将激发模式拟合到自旋波模型。平面内铁磁性海森堡交换模型具有七个最近的面内交换,可以很好地描述镁谱。这种合适的交换汉密尔顿实现了CRSBR行为的理论预测:作为一个例子,我们使用拟合的哈密顿量来预测具有旋转轨道增强CRSBR异质结构的手性磁质模式的存在。
CrSBr is an air-stable 2D van der Waals semiconducting magnet with great technological promise, but its atomic-scale magnetic interactions -- crucial information for high-frequency switching -- are poorly understood. We present an experimental study to determine the CrSBr magnetic exchange Hamiltonian and bulk magnon spectrum. We confirm the $A$-type antiferromagnetic order using single crystal neutron diffraction. We also measure the magnon dispersions using inelastic neutron scattering and rigorously fit the excitation modes to a spin wave model. The magnon spectrum is well described by an intra-plane ferromagnetic Heisenberg exchange model with seven nearest in-plane exchanges. This fitted exchange Hamiltonian enables theoretical predictions of CrSBr behavior: as one example, we use the fitted Hamiltonian to predict the presence of chiral magnon edge modes with a spin-orbit enhanced CrSBr heterostructure.