论文标题
通过在Bi2IR2O7/dy2TI2O7异质结构中打破冰规则的异常磁化
Anomalous Magnetoresistance by Breaking Ice Rule in Bi2Ir2O7/Dy2Ti2O7 Heterostructure
论文作者
论文摘要
虽然几何沮丧的量子磁铁以多种外来的自旋状态而闻名,这些状态具有重要的理解现象以及启用革命性量子技术的极大利益,但其中大多数必然是良好的绝缘子,这些绝缘子很难与现代电路相完善,这些电路依赖于移动荷载载流子。将沮丧的力矩转换为电子响应的波动和激发的巨大挑战是找到引入荷载载体与局部旋转相互作用而不会破坏旋转状态的方法。在这里,我们表明,通过设计BI2IR2O7/DY2TI2O7异质结构,旋转冰规则在绝缘DY2TI2O7中破裂可以导致可以在BI2IR2O7电导层中产生电荷响应,该电阻可以被检测为异常磁势。这些结果证明了一种新型且可行的界面方法,用于电子探测外来的自旋态在绝缘磁体中,为沮丧的量子磁体的金属化铺设了蓝图。
While geometrically frustrated quantum magnets are known for a variety of exotic spin states that are of great interests of understanding emergent phenomena as well as enabling revolutionary quantum technologies, most of them are necessarily good insulators which are difficult to be integrated with modern electrical circuit that relies on moving charge carriers. The grand challenge of converting fluctuations and excitations of frustrated moments into electronic responses is finding ways to introduce charge carriers that interact with the localized spins without destroying the spin states. Here, we show that, by designing a Bi2Ir2O7/Dy2Ti2O7 heterostructure, the breaking of the spin ice rule in insulating Dy2Ti2O7 can lead to a charge response in the Bi2Ir2O7 conducting layer that can be detected as anomalous magnetoresistance. These results demonstrate a novel and feasible interfacial approach for electronically probing exotic spin states in insulating magnets, laying out a blueprint for the metallization of frustrated quantum magnets.