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  5. Strong Ferromagnetism Achieved via Breathing Lattices in Atomically Thin Cobaltites

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Preprint
en
2020

Strong Ferromagnetism Achieved via Breathing Lattices in Atomically Thin Cobaltites

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en
2020
DOI: 10.48550/arxiv.2010.09998arxiv.org/abs/2010.09998

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Lin Gu
Lin Gu

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Sisi Li
Qinghua Zhang
Shan Lin
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Abstract

Low-dimensional quantum materials that remain strongly ferromagnetic down to mono layer thickness are highly desired for spintronic applications. Although oxide materials are important candidates for next generation of spintronic, ferromagnetism decays severely when the thickness is scaled to the nano meter regime, leading to deterioration of device performance. Here we report a methodology for maintaining strong ferromagnetism in insulating LaCoO3 (LCO) layers down to the thickness of a single unit cell. We find that the magnetic and electronic states of LCO are linked intimately to the structural parameters of adjacent "breathing lattice" SrCuO2 (SCO). As the dimensionality of SCO is reduced, the lattice constant elongates over 10% along the growth direction, leading to a significant distortion of the CoO6 octahedra, and promoting a higher spin state and long-range spin ordering. For atomically thin LCO layers, we observe surprisingly large magnetic moment (0.5 uB/Co) and Curie temperature (75 K), values larger than previously reported for any mono layer oxide. Our results demonstrate a strategy for creating ultra thin ferromagnetic oxides by exploiting atomic hetero interface engineering,confinement-driven structural transformation, and spin-lattice entanglement in strongly correlated materials.

How to cite this publication

Sisi Li, Qinghua Zhang, Shan Lin, Xiahan Sang, Ryan F. Need, Manuel A. Roldán, Wenjun Cui, Zhi‐Yi Hu, Qiao Jin, Shuang Chen, Jiali Zhao, Jiaou Wang, Jiesu Wang, Meng He, Chen Ge, Can Wang, Hui‐bin Lu, Zhenping Wu, Haizhong Guo, Xin Tong, Tao Zhu, B. J. Kirby, Lin Gu, Kui-juan Jin, Er‐Jia Guo (2020). Strong Ferromagnetism Achieved via Breathing Lattices in Atomically Thin Cobaltites. , DOI: https://doi.org/10.48550/arxiv.2010.09998.

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Publication Details

Type

Preprint

Year

2020

Authors

25

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.48550/arxiv.2010.09998

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