论文标题
抗铁磁环链链中野外诱导的自旋重新定向转变
Field-induced spin reorientation transitions in antiferromagnetic ring-shaped spin chains
论文作者
论文摘要
易于轴抗铁磁磁铁对中等强度的外部磁场具有鲁棒性。强场上的自旋重新定位可以提供对抗铁磁材料的更微妙特性的见解,这些特性通常被其高基态对称性所掩盖。在这里,我们研究了在强磁场中,在环形抗磁性障碍性偶然旋转链中曲率的理论上曲率效应。我们确定了涡流和洋葱状态之间自旋流动场之上的几何形状检测的呼射相变。曲率诱导的dzyaloshinskii-moriya相互作用导致自旋流动过渡取决于环曲率的一阶或二阶。自旋流相中Néel载体的空间不均匀性在垂直于施加磁场的平面中产生弱铁磁反应。我们的工作有助于理解磁场中曲线性抗铁磁铁的物理学,并指导依靠基于旋转链的纳米磁铁的几何效应的前瞻性实验研究。
Easy axis antiferromagnets are robust against external magnetic fields of moderate strength. Spin reorientations in strong fields can provide an insight into more subtle properties of antiferromagnetic materials, which are often hidden by their high ground state symmetry. Here, we investigate theoretically effects of curvature in ring-shaped antiferromagnetic achiral anisotropic spin chains in strong magnetic fields. We identify the geometry-governed helimagnetic phase transition above the spin-flop field between vortex and onion states. The curvature-induced Dzyaloshinskii-Moriya interaction results in the spin-flop transition being of first- or second-order depending on the ring curvature. Spatial inhomogeneity of the Néel vector in the spin-flop phase generates weak ferromagnetic response in the plane perpendicular to the applied magnetic field. Our work contributes to the understanding of the physics of curvilinear antiferromagnets in magnetic fields and guides prospective experimental studies of geometrical effects relying on spin-chain-based nanomagnets.