论文标题
外延nico2O4膜作为新兴的旋转材料的观点:磁和运输特性
Perspective on Epitaxial NiCo2O4 Film as an Emergent Spintronic Material: Magnetism and Transport Properties
论文作者
论文摘要
铁磁性逆尖晶石NICO2O4因其多功能电化学性能,稳健的磁性,高电导率和快速自旋动力学以及由于紧密耦合电荷,旋转,旋转,轨道,轨道,晶格和缺陷效应而引起了广泛的研究兴趣。 NICO2O4的单晶外延薄膜提出了一种模型系统,用于阐明内在的物理特性和强可调性,在大量单晶中不可行。从这个角度来看,我们讨论了外延NICO2O4薄膜的最新进展,重点是理解其在晶体结构和电子结构的光线下其异常的磁性和运输特性。通过考虑强旋晶格耦合,尤其是在CO ION上,可以解释压缩性良好的NICO2O4膜中的垂直磁各向异性。生长条件的显着作用揭示了晶体结构,阳离化的化学计量,价状态和位点占用率之间的复杂相互作用。 NICO2O4薄膜还表现出各种磁转运异常,包括线性磁磁性和异常霍尔效应的标志变化,这说明了固有性浆果相和杂质散射的竞争效应。对这些现象的基本理解将促进NICO2O4薄膜的功能设计,用于纳米级的旋转器应用。
The ferrimagnetic inverse spinel NiCo2O4 has attracted extensive research interests for its versatile electrochemical properties, robust magnetic order, high conductivity, and fast spin dynamics, as well as its highly tunable nature due to the closely coupled charge, spin, orbital, lattice, and defect effects. Single-crystalline epitaxial thin films of NiCo2O4 present a model system for elucidating the intrinsic physical properties and strong tunability, which are not viable in bulk single crystals. In this perspective, we discuss the recent advances in epitaxial NiCo2O4 thin films, focusing on understanding its unusual magnetic and transport properties in light of crystal structure and electronic structure. The perpendicular magnetic anisotropy in compressively strained NiCo2O4 films is explained by considering the strong spin-lattice coupling, particularly on Co ions. The prominent effect of growth conditions reveals the complex interplay between the crystal structure, cation stoichiometry, valence state, and site occupancy. NiCo2O4 thin films also exhibit various magnetotransport anomalies, including linear magnetoresistance and sign change in anomalous Hall effect, which illustrate the competing effects of band intrinsic Berry phase and impurity scattering. The fundamental understanding of these phenomena will facilitate the functional design of NiCo2O4 thin films for nanoscale spintronic applications.