论文标题

铁磁金属的柔性控制

Flexoelectric control of a ferromagnetic metal

论文作者

Peng, Wei, Park, Se Young, Roh, Chang Jae, Mun, Junsik, Ju, Hwiin, Kim, Jinkwon, Ko, Eun Kyo, Liang, Zhengguo, Hahn, Sungsoo, Zhang, Jinfeng, Si, Liang, Jo, Yong Jin, Kim, Tae Heon, Kim, Changyoung, Wang, Lingfei, Kim, Miyoung, Lee, Jong Seok, Noh, Tae Won, Lee, Daesu

论文摘要

电场在发现和控制冷凝物质的奇特电子状态方面发挥了关键作用。但是,由于自由载体倾向于筛选静电场,因此电场通常不适用于金属。尽管不均匀晶格菌株产生的伪电场,即挠性电场,原则上可以在所有类别的材料中进行工作,但它在金属中仍未在实验上无法探索。在这里,使用杂田和原子尺度成像,我们表明挠性电场可以使金属氧化物SRRUO3偏振,并具有出乎意料的大RU外位移。我们还观察到,柔韧性诱导的SRRUO3的极性状态会导致相当大的晶格膨胀,类似于由外部电场下介电离子位移引起的电图膨胀。我们进一步建议,挠性驱动的ru偏心促进了晶格和电子自由度之间的牢固耦合,可能会增强srruo3的铁磁性。除了传统的电场外,挠性电场还可以以非破坏性和快速的方式通过纯原子位移来普遍产生新型电子状态及其控制。

Electric fields have played a key role in discovering and controlling exotic electronic states of condensed matter. However, electric fields usually do not work in metals as free carriers tend to screen electrostatic fields. While a pseudo-electric field generated by inhomogeneous lattice strain, namely a flexoelectric field, can in principle work in all classes of materials, it remains experimentally unexplored in metals. Here, using heteroepitaxy and atomic-scale imaging, we show that flexoelectric fields can polarize a metallic oxide SrRuO3 with unexpectedly large Ru off-center displacements. We also observe that the flexoelectrically induced polar state of SrRuO3 leads to sizable lattice expansion, similar to the electrostrictive expansion caused by ionic displacements in dielectrics under an external electric field. We further suggest that flexoelectrically driven Ru off-centering promotes strong coupling between lattice and electronic degrees of freedom, possibly enhancing the ferromagnetism of SrRuO3. Beyond conventional electric fields, flexoelectric fields may universally engender novel electronic states and their control via pure atomic displacements in a nondestructive and fast manner.

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