论文标题
LACOO3外延薄膜中的可调铁磁性
Tunable Ferromagnetism in LaCoO3 Epitaxial Thin Films
论文作者
论文摘要
铁磁绝缘子在用于旋转型的低衰减量子磁性设备的开发中起着至关重要的作用。外延lacoo3薄膜是一种突出的铁磁绝缘子,由于外延菌株,出现了强大的铁磁顺序。尽管很明显,强的自旋晶格耦合会诱导铁磁性,但据报道的外上线张紧的LACOO3薄膜的铁磁特性高度一致。例如,即使在很大程度上调制的应变程度下,据报道的外延紧张的lacoo3薄膜的库里温度也位于80-85 K之内,没有太大偏差。在这项研究中,通过晶体学取向依赖性证明了外延lacoo3薄膜的质量中的大量增强(约18%)。通过将膜的晶体学取向从(111)更改为(110),晶体场能量减少,并增强了CO和O轨道之间的电荷转移。这些修饰导致了亚称性菌株的相同程度,导致了铁磁特性(包括居里温度和磁化)的相当大增强。这项研究的发现通过LACOOO3中的结构对称性控制,提供了对铁磁特性可调节性的见解。
Ferromagnetic insulators play a crucial role in the development of low-dissipation quantum magnetic devices for spintronics. Epitaxial LaCoO3 thin film is a prominent ferromagnetic insulator, in which the robust ferromagnetic ordering emerges owing to epitaxial strain. Whereas it is evident that strong spin-lattice coupling induces ferromagnetism, the reported ferromagnetic properties of epitaxially strained LaCoO3 thin films were highly consistent. For example, even under largely modulated degree of strain, the reported Curie temperatures of epitaxially strained LaCoO3 thin films lie within 80-85 K, without much deviation. In this study, substantial enhancement (~18%) in the Curie temperature of epitaxial LaCoO3 thin films is demonstrated via crystallographic orientation dependence. By changing the crystallographic orientation of the films from (111) to (110), the crystal-field energy was reduced and the charge transfer between the Co and O orbitals was enhanced. These modifications led to a considerable enhancement of the ferromagnetic properties (including the Curie temperature and magnetization), despite the identical nominal degree of epitaxial strain. The findings of this study provide insights into facile tunability of ferromagnetic properties via structural symmetry control in LaCoO3.