arXiv · 2412.04957
Ultrahigh-temperature ferromagnetism in ultrathin insulating films with ripple-infinite-layer structure
Abstract
Ferromagnetism and electrical insulation are often at odds, signifying an inherent trade off. The simultaneous optimization of both in one material, essential for advancing spintronics and topological electronics, necessitates the individual manipulation over various degrees of freedom of strongly correlated electrons. Here, by selective control of the spin exchange and Coulomb interactions, we report the achievement of SrFeO2 thin films with resistivity above 106 Ohm.cm and strong magnetization with Curie temperature extrapolated to be 1200 K. Robust ferromagnetism is obtained down to 1.0 nm thickness on substrate and 2.0 nm for freestanding films. Featuring an out of plane oriented ripple infinite layer structure, this ferromagnetic insulating phase is obtained through extensive reduction of as grown brownmillerite SrFeO2.5 films at high compressive strains. Pronounced spin Hall magnetoresistance signals up to 0.0026 is further demonstrated with a Pt Hall bar device. Our findings promise emerging spintronic and topological electronic functionalities harnessing spin dynamics with minimized power dissipations.
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Yazhuo Yi, Haoliang Huang, Ruiwen Shao, Yukuai Liu, Guangzheng Chen, Jiahui Ou, Xi Zhang, Ze Hua, Lang Chen, Chi Wah Leung, Xie-Rong Zeng, Feng Rao, Nan Liu, Heng Wang, Liang Si, Hongyu An, Zhuoyu Chen, Chuanwei Huang. 2024-12-06. Ultrahigh-temperature ferromagnetism in ultrathin insulating films with ripple-infinite-layer structure. https://arxiv.org/abs/2412.04957
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