论文标题
自旋 - 肛门挫败磁铁FEI2中的杂交四极激发2
Hybridized quadrupolar excitations in the spin-anisotropic frustrated magnet FeI2
论文作者
论文摘要
磁性阶通常与定义明确的磁通激发有关。已经提出了针对诸如旋转液体的磁性物质,具有分数,拓扑或多极特性的外来磁波动。结果,在低温下搜索并发现了具有抑制偶极顺序的低自旋材料的大量努力。在这里,我们报告了一个特殊的自旋-1系统(单轴三角形磁铁FEI2)的中子散射实验和定量理论建模,其中混合二极极度极性波动的明亮和分散带在偶极有序的地面状态下方出现。这种激发是由各向异性交换相互作用引起的,这些交流杂交构成了根本不同的量子数的重叠模式。值得注意的是,自旋理论对本地su(3)自由度的概括解释了FEI2低能动力响应的所有细节,而无需超越二次秩序。我们的工作强调,即使在存在完全开发的磁性顺序的情况下,也可以实现量子激发,即使没有经典的对应物也可以实现。
Magnetic order is usually associated with well-defined magnon excitations. Exotic magnetic fluctuations with fractional, topological or multipolar character, have been proposed for radically different forms of magnetic matter such as spin-liquids. As a result, considerable efforts have searched for, and uncovered, low-spin materials with suppressed dipolar order at low temperatures. Here, we report neutron-scattering experiments and quantitative theoretical modeling of an exceptional spin-1 system -- the uniaxial triangular magnet FeI2 -- where a bright and dispersive band of mixed dipolar-quadrupolar fluctuations emerges just above a dipolar ordered ground-state. This excitation arises from anisotropic exchange interactions that hybridize overlapping modes carrying fundamentally different quantum numbers. Remarkably, a generalization of spin-wave theory to local SU(3) degrees of freedom accounts for all details of the low-energy dynamical response of FeI2 without going beyond quadratic order. Our work highlights that quantum excitations without classical counterparts can be realized even in presence of fully developed magnetic order.