论文标题

探索3D人造自旋冰的阶段:从库仑相到磁性单极晶体

Exploring the phases of 3D artificial spin ice: From Coulomb phase to magnetic monopole crystal

论文作者

Saccone, M., Berg, A. Van den, Harding, E., Singh, S., Giblin, S. R., Flicker, F., Ladak, S.

论文摘要

人工旋转式蛋白酶由组织成沮丧的晶格的单域磁性纳米线的光刻阵列组成。这些几何形状通常是二维的,可以直接探索与挫败感,拓扑和出现相关的物理学。最近,已经实现了三维几何形状,其中可以直接在表面上可视化出现的单极传输。在这里,我们对三维人造自旋冰相图进行了探索,从而将偶极子放置在钻石键的晶格几何形状中。我们发现了一个丰富的相图,该图由双重荷兰单极晶体,单芯单极晶体和常规的旋转冰冰层组成,并具有与库仑相相关的捏点。在我们的实验性去磁性系统中,表面上的铁磁条纹的破碎对称力形成,这种构型禁止形成较低的能量双电荷单极晶体。取而代之的是,我们观察到单磁电荷的结晶石,叠加在冰背景上。由于在三维纳米结构的顶点周围的磁电荷分布复杂,因此发现了结晶岩形成,该磁力在局部有利于单子形成。我们的工作表明,工程表面能量可以用于调整实验三维ASI系统的基础状态。

Artificial spin-ices consist of lithographic arrays of single-domain magnetic nanowires organised into frustrated lattices. These geometries are usually two-dimensional, allowing a direct exploration of physics associated with frustration, topology and emergence. Recently, three-dimensional geometries have been realised, in which transport of emergent monopoles can be directly visualised upon the surface. Here we carry out an exploration of the three-dimensional artificial spin-ice phase diagram, whereby dipoles are placed within a diamond-bond lattice geometry. We find a rich phase diagram, consisting of a double-charged monopole crystal, a single-charged monopole crystal and conventional spin-ice with pinch points associated with a Coulomb phase. In our experimental demagnetised systems, broken symmetry forces formation of ferromagnetic stripes upon the surface, a configuration that forbids the formation of the lower energy double-charged monopole crystal. Instead, we observe crystallites of single magnetic charge, superimposed upon an ice background. The crystallites are found to form due to the intricate distribution of magnetic charge around a three-dimensional nanostructured vertex, which locally favours monopole formation. Our work suggests that engineered surface energetics can be used to tune the ground state of experimental three-dimensional ASI systems.

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