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首页> 外文期刊>Frontiers of physics >Spontaneous ferroelectricity in strained low-temperature monoclinic Fe_3O_4: A first-principles study
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Spontaneous ferroelectricity in strained low-temperature monoclinic Fe_3O_4: A first-principles study

机译:应变低温单斜晶Fe_3O_4中的自发铁电:第一性原理研究

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As a single-phase multiferroic material, Fe3O4 exhibits spontaneous ferroelectric polarization below 38 K. However, the nature of the ferroelectricity in Fe3O4 and effect of external disturbances such as strain on it remains ambiguous. Here, the spontaneous ferroelectric polarization of low-temperature monoclinic Fe3O4 was investigated by first-principles calculations. The pseudo-centrosymmetric FeB42-FeB43 pair has a different valence state. The noncentrosymmetric charge distribution results in ferroelectric polarization. The initial ferroelectric polarization direction is in the -x and -z directions. The ferroelectricity along the y axis is limited owing to the symmetry of the Cc space group. Both the ionic displacement and charge separation at the FeB42-FeB43 pair are affected by strain, which further influences the spontaneous ferroelectric polarization of monoclinic Fe3O4. The ferroelectric polarization along the z axis exhibits an increase of 45.3% as the strain changes from 6% to -6%.
机译:作为单相多铁性材料,Fe3O4在38 K以下表现出自发的铁电极化。但是,Fe3O4中铁电的性质以及外部干扰(例如应变)对其的影响仍然不明确。在这里,通过第一性原理计算研究了低温单斜Fe3O4的自发铁电极化。伪中心对称的FeB42-FeB43对具有不同的化合价态。非中心对称的电荷分布导致铁电极化。初始铁电极化方向为-x和-z方向。由于Cc空间群的对称性,沿y轴的铁电受到限制。 FeB42-FeB43对的离子位移和电荷分离都受应变的影响,这进一步影响了单斜Fe3O4的自发铁电极化。当应变从6%变为-6%时,沿z轴的铁电极化表现出45.3%的增加。

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