Institute for Molecules and Materials, Radboud University, Nijmegen, Netherlands.
Department of Physics and Astronomy, Uppsala University, Uppsala, Sweden.
Science. 2020 May 29;368(6494). doi: 10.1126/science.aay6757.
Spin glasses are a highly complex magnetic state of matter intricately linked to spin frustration and structural disorder. They exhibit no long-range order and exude aging phenomena, distinguishing them from quantum spin liquids. We report a previously unknown type of spin glass state, the spin-Q glass, observable in bulk-like crystalline metallic neodymium thick films. Using spin-polarized scanning tunneling microscopy combined with ab initio calculations and atomistic spin-dynamics simulations, we visualized the variations in atomic-scale noncolinear order and its response to magnetic field and temperature. We quantified the aging phenomena relating the glassiness to crystalline symmetry and the energy landscape. This result not only resolves the long-standing debate of the magnetism of neodymium, but also suggests that glassiness may arise in other magnetic solids lacking extrinsic disorder.
自旋玻璃是一种与自旋阻挫和结构无序密切相关的高度复杂的物质磁态。它们没有长程有序,并表现出老化现象,这使它们有别于量子自旋液体。我们报告了一种以前未知的自旋玻璃态,即自旋-Q 玻璃,在块状类似的结晶金属钕厚膜中可以观察到。我们使用自旋极化扫描隧道显微镜结合第一性原理计算和原子自旋动力学模拟,可视化了原子尺度的非共线有序及其对磁场和温度的响应。我们量化了与玻璃态有关的老化现象,包括与晶体对称性和能量景观的关系。这一结果不仅解决了长期以来关于钕磁体的争论,还表明在其他缺乏外在无序的磁性固体中可能也会出现玻璃态。