论文标题
人造自旋冰中的弦阶段
String Phase in an Artificial Spin Ice
论文作者
论文摘要
局部激发的一维串是强相关拓扑量子物质的身体行为的一个有趣特征。在这里,我们研究了相互作用的纳米磁体的经典系统,即人造自旋冰的圣诞老人冰的几何形状。我们测量了纳米磁体的矩构型,既在铁磁库里点附近,又处于热动态状态之后。虽然圣达菲冰晶格结构很复杂,但我们证明了其无序的磁性状态自然是在新兴弦的框架内描述的。我们通过实验表明,弦长的长度遵循一个简单的玻尔兹曼分布,其能量尺度与系统的磁相互作用相关,并且与理论预测一致。结果表明,字符串描述和相关的拓扑特性不是量子模型独有的,但也可以简化地描述具有非平凡挫败感的复杂经典系统。
One-dimensional strings of local excitations are a fascinating feature of the physical behavior of strongly correlated topological quantum matter. Here we study strings of local excitations in a classical system of interacting nanomagnets, the Santa Fe Ice geometry of artificial spin ice. We measured the moment configuration of the nanomagnets, both after annealing near the ferromagnetic Curie point and in a thermally dynamic state. While the Santa Fe Ice lattice structure is complex, we demonstrate that its disordered magnetic state is naturally described within a framework of emergent strings. We show experimentally that the string length follows a simple Boltzmann distribution with an energy scale that is associated with the system's magnetic interactions and is consistent with theoretical predictions. The results demonstrate that string description and associated topological characteristics are not unique to quantum models but can also provide a simplifying description of complex classical systems with non-trivial frustration.