论文标题
直接观察二维人造自旋冰中的磁性单极自由
Direct observation of magnetic monopole freedom in two-dimensional artificial spin ice
论文作者
论文摘要
在二维人造自旋冰系统中,磁性单极不成功随着外部磁场的函数作为指纹。这种自由(例如,在磁性中进一步应用所需的自由)仅由于地面退化而才有可能,这会导致矩形几何形状中的弦能量减少,旨在允许纳米磁体之间的最高等距。通过模拟,我们显示了不同矩形人造自旋冰中的自旋相关性从抗磁性有序的磁性结构演变为铁磁结构,通过冰状态是与库仑相关的捏点。通过测量磁力显微镜,我们在这样的系统中观察到磁性单极的产生,传输和an灭,并在整个样品中创建和运输,而没有附着在整个样品中,就像在常规的人造自旋冰系统中所观察到的那样。
Magnetic monopole unpairing as a function of external magnetic fields is presented as a fingerprint of this emergent quasiparticles freedom in a two-dimensional artificial spin ice system. Such freedom, required for example for further application in magnetricity, is only possible due to ground-state degeneracy, which causes a decreasing of the string energy in rectangular geometries, designed to allow highest equidistance among nanomagnets. We show by simulations that spin correlation in different rectangular artificial spin ices evolves from antiferromagnetic ordered magnetic structure to a ferromagnetic one, passing through an ice regime were pinch points related to Coulomb phase are observed. By measurements of magnetic force microscopy, we observe magnetic monopole creation, transport and annihilation in such systems with free monopoles created and transported throughout the sample without strings attached, as is commonly observed in conventional artificial spin ice systems.