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Origin of giant spin-lattice coupling and the suppression of ferroelectricity in EuTiO_3 from first principles

机译:从第一性原理看EuTiO_3中自旋-晶格耦合的起源和铁电的抑制

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摘要

We elucidate the microscopic mechanism that causes a suppression of ferroelectricity and an enhancement of octahedral rotations in EuTiO_3 from first principles. We find that the hybridization of the rare-earth Eu 4f states with the B-site Ti cation drives the system away from ferroelectricity. We also show that the magnetic order dependence of this hybridization is the dominant source of spin-phonon coupling in this material. Our results underline the importance of rare-earth f electrons on the lattice dynamics and stability of these transition metal oxides.
机译:我们首先从原理上阐明了导致EuTiO_3中铁电抑制和八面体旋转增强的微观机理。我们发现稀土Eu 4f态与B位Ti阳离子的杂化使系统远离铁电。我们还表明,这种杂化的磁序依赖性是该材料中自旋声子耦合的主要来源。我们的结果强调了稀土f电子对这些过渡金属氧化物的晶格动力学和稳定性的重要性。

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