Zhao Run, Yang Chao, Wang Hongguang, Jiang Kai, Wu Hua, Shen Shipeng, Wang Le, Sun Young, Jin Kuijuan, Gao Ju, Chen Li, Wang Haiyan, MacManus-Driscoll Judith L, van Aken Peter A, Hong Jiawang, Li Weiwei, Yang Hao
MIIT Key Laboratory of Aerospace Information Materials and Physics, College of Physics, Nanjing University of Aeronautics and Astronautics, 211106, Nanjing, China.
Jiangsu Key Laboratory of Micro and Nano Heat Fluid Flow Technology and Energy Application, School of Physical Science and Technology, Suzhou University of Science and Technology, 215009, Suzhou, China.
Nat Commun. 2022 May 2;13(1):2364. doi: 10.1038/s41467-022-30074-4.
Negative pressure has emerged as a powerful tool to tailor the physical properties of functional materials. However, a negative pressure control of spin-phonon coupling for engineering magnetism and multiferroicity has not been explored to date. Here, using uniform three-dimensional strain-induced negative pressure in nanocomposite films of (EuTiO):(MgO), we demonstrate an emergent multiferroicity with magnetodielectric coupling in EuTiO, matching exactly with density functional theory calculations. Density functional theory calculations are further used to explore the underlying physics of antiferromagnetic-paraelectric to ferromagnetic-ferroelectric phase transitions, the spin-phonon coupling, and its correlation with negative pressures. The observation of magnetodielectric coupling in the EuTiO reveals that an enhanced spin-phonon coupling originates from a negative pressure induced by uniform three-dimensional strain. Our work provides a route to creating multiferroicity and magnetoelectric coupling in single-phase oxides using a negative pressure approach.
负压已成为一种用于调整功能材料物理性质的强大工具。然而,迄今为止尚未探索通过负压控制自旋 - 声子耦合来调控磁性和多铁性。在此,我们利用(EuTiO):(MgO)纳米复合薄膜中均匀的三维应变诱导负压,在EuTiO中展示了一种具有磁电耦合的新兴多铁性,这与密度泛函理论计算结果完全吻合。密度泛函理论计算进一步用于探究反铁磁 - 顺电到铁磁 - 铁电相变的潜在物理机制、自旋 - 声子耦合及其与负压的相关性。在EuTiO中对磁电耦合的观察表明,增强的自旋 - 声子耦合源自均匀三维应变诱导的负压。我们的工作提供了一种利用负压方法在单相氧化物中创造多铁性和磁电耦合的途径。