论文标题
非共线性抗铁磁体MN3SN中自旋 - 轨道驱动的自旋动力学的量子传感和成像
Quantum sensing and imaging of spin-orbit-torque-driven spin dynamics in noncollinear antiferromagnet Mn3Sn
论文作者
论文摘要
具有自发的时间反向对称性破坏,非平凡的谱系和非常规的运输特性的新型非共线性抗铁磁铁在过去十年中,由于其丰富的物理学和在技术应用中的巨大希望,在过去的十年中获得了巨大的研究兴趣。在这个新兴领域中的中心重点之一是探索微观磁性结构与外来物质特性之间的关系。在这里,报告了使用氮存术(NV)中心在非共线性抗fiferromagnet MN3SN膜中两种自旋 - 轨道诱导的确定性磁开关和手性自旋旋转的纳米级成像。 NV弛豫测量值也证明了MN3SN和接近NV中心的自旋动力学之间的自旋动力学之间的非谐波偶极 - 偶极偶联的直接证据。这些结果证明了NV中心在这些新兴量子材料中访问磁性顺序和动态的局部信息的独特功能,并为研究拓扑和磁性之间的相互作用提供了新的机会。
Novel noncollinear antiferromagnets with spontaneous time-reversal symmetry breaking, nontrivial band topology, and unconventional transport properties have received immense research interest over the past decade due to their rich physics and enormous promise in technological applications. One of the central focuses in this emerging field is exploring the relationship between the microscopic magnetic structure and exotic material properties. Here, the nanoscale imaging of both spin-orbit-torque-induced deterministic magnetic switching and chiral spin rotation in noncollinear antiferromagnet Mn3Sn films using nitrogen-vacancy (NV) centers is reported. Direct evidence of the off-resonance dipole-dipole coupling between the spin dynamics in Mn3Sn and proximate NV centers is also demonstrated with NV relaxometry measurements. These results demonstrate the unique capabilities of NV centers in accessing the local information of the magnetic order and dynamics in these emergent quantum materials and suggest new opportunities for investigating the interplay between topology and magnetism in a broad range of topological magnets.