论文标题

高度紧张的SRCOO3薄膜中强大的铁磁性

Robust ferromagnetism in highly strained SrCoO3 thin films

论文作者

Wang, Yujia, He, Qing, Ming, Wenmei, Du, Mao-Hua, Lu, Nianpeng, Cafolla, Clodomiro, Fujioka, Jun, Zhang, Qinghua, Zhang, Ding, Shen, Shengchun, Lyu, Yingjie, N'Diaye, Alpha T., Arenholz, Elke, Gu, Lin, Nan, Cewen, Tokura, Yoshinori, Okamoto, Satoshi, Yu, Pu

论文摘要

外延应变提供了控制过渡金属氧化物中磁性和电子状态的重要途径。然而,大应变通常伴随着氧空位形成能的强烈减少,这阻碍了其内在特性的直接操纵。在这里,使用沉积后臭氧退火方法,我们获得了一系列氧气化学计量学SRCOO3薄膜,其拉伸应变高达3.0%。我们观察到在所有紧张的薄膜中都有强大的铁磁基态,但有趣的是,拉伸应变触发了独特的金属到绝缘体的过渡,并增加了拉伸应变。因此,跨电跃迁的持续铁磁状态表明,磁态与局部电子直接相关,而不是静态电子,然后要求进一步研究该磁化合物的内在机制以外的双交换机制。

Epitaxial strain provides important pathways to control the magnetic and electronic states in transition metal oxides. However, the large strain is usually accompanied by a strong reduction of the oxygen vacancy formation energy, which hinders the direct manipulation of their intrinsic properties. Here using a post-deposition ozone annealing method, we obtained a series of oxygen stoichiometric SrCoO3 thin films with the tensile strain up to 3.0%. We observed a robust ferromagnetic ground state in all strained thin films, while interestingly the tensile strain triggers a distinct metal to insulator transition along with the increase of the tensile strain. The persistent ferromagnetic state across the electrical transition therefore suggests that the magnetic state is directly correlated with the localized electrons, rather than the itinerant ones, which then calls for further investigation of the intrinsic mechanism of this magnetic compound beyond the double-exchange mechanism.

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