Liu Xiaoran, Kim Jong-Woo, Wang Yao, Terilli Michael, Jia Xun, Kareev Mikhail, Peng Shiyu, Wen Fangdi, Wu Tsung-Chi, Chen Huyongqing, Hu Wanzheng, Upton Mary H, Kim Jungho, Choi Yongseong, Haskel Daniel, Weng Hongming, Ryan Philip J, Cao Yue, Qi Yang, Guo Jiandong, Chakhalian Jak
Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, China.
Department of Physics and Astronomy, Rutgers University, Piscataway, NJ, USA.
Nat Commun. 2024 Nov 28;15(1):10348. doi: 10.1038/s41467-024-54655-7.
The pyrochlore iridates have become ideal platforms to unravel fascinating correlated and topological phenomena that stem from the intricate interplay among strong spin-orbit coupling, electronic correlations, lattice with geometric frustration, and itinerancy of the 5d electrons. The all-in-all-out antiferromagnetic state, commonly considered as the magnetic ground state, can be dramatically altered in reduced dimensionality, leading to exotic or hidden quantum states inaccessible in bulk. Here, by means of magnetotransport, resonant elastic and inelastic x-ray scattering experiments, we discover an emergent quantum disordered state in (111) YIrO thin films (thickness ≤30 nm) persisting down to 5 K, characterized by dispersionless magnetic excitations. The anomalous Hall effect observed below an onset temperature near 125 K corroborates the presence of chiral short-range spin configurations expressed in non-zero scalar spin chirality, breaking the macroscopic time-reversal symmetry. The origin of this chiral state is ascribed to the restoration of magnetic frustration on the pyrochlore lattice in lower dimensionality, where the competing exchange interactions together with enhanced quantum fluctuations suppress any long-range order and trigger spin-liquid-like behavior with degenerate ground-state manifold.
烧绿石铱酸盐已成为揭示迷人的关联和拓扑现象的理想平台,这些现象源于强自旋轨道耦合、电子关联、具有几何阻挫的晶格以及5d电子的巡游性之间的复杂相互作用。通常被认为是磁基态的全进全出反铁磁态,在低维情况下会发生显著变化,从而导致在体相中无法实现的奇异或隐藏量子态。在此,通过磁输运、共振弹性和非弹性x射线散射实验,我们在(111)YIrO薄膜(厚度≤30 nm)中发现了一种新兴的量子无序态,该态一直持续到5 K,其特征是无色散磁激发。在接近125 K的起始温度以下观察到的反常霍尔效应证实了以非零标量自旋手性表示的手性短程自旋构型的存在,打破了宏观时间反演对称性。这种手性态的起源归因于低维烧绿石晶格上磁阻挫的恢复,其中相互竞争的交换相互作用与增强的量子涨落共同抑制了任何长程序,并触发了具有简并基态流形的自旋液体样行为。