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首页> 外文期刊>Physical review, B >Origin of magnetoelectric effect in Co4Nb2O9 and Co4Ta2O9: The lessons learned from the comparison of first-principles-based theoretical models and experimental data
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Origin of magnetoelectric effect in Co4Nb2O9 and Co4Ta2O9: The lessons learned from the comparison of first-principles-based theoretical models and experimental data

机译:Co4Nb2O9和Co4Ta2O9中磁电效应的起源:从基于第一原理的理论模型和实验数据的比较中学到的教训

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We report results of joint experimental and theoretical studies on magnetoelectric (ME) compounds Co4Nb2O9 and Co4Ta2O9. On the experimental side, we present results of the magnetization and dielectric permittivity measurements in the magnetic field. On the theoretical side, we construct the low-energy Hubbard-type model for the magnetically active Co3d bands in the Wannier basis, using the input of the first-principles electronic structure calculations, solve this model in the mean-field Hartree-Fock approximation, and evaluate the electric polarization in terms of the Berry phase theory. Both experimental and theoretical results suggest that Co4Ta2O9 is magnetically softer than Co4Nb2O9. Therefore, it is reasonable to expect that the antiferromagnetic structure of Co4Ta2O9 can be easier deformed by the external magnetic field, yielding larger polarization. This trend is indeed reproduced by our theoretical calculations, but does not seem to be consistent with the experimental behavior of the polarization and dielectric permittivity. Thus, we suggest that there should be a hidden mechanism controlling the ME coupling in these compounds, probably related to the magnetic striction or a spontaneous change of the magnetic structure, which breaks the inversion symmetry. Furthermore, we argue that unlike in other ME systems (e.g., Cr2O3), in Co4Nb2O9 and Co4Ta2O9 there are two crystallographic sublattices, which contribute to the ME effect. These contributions are found to be of the opposite sign and tend to compensate each other. The latter mechanism can be also used to control and reverse the electric polarization in these compounds.
机译:我们报告了磁电(ME)化合物Co4Nb2O9和Co4Ta2O9的联合实验和理论研究的结果。在实验方面,我们介绍了磁场中磁化和介电常数的测量结果。从理论上讲,我们使用第一性原理电子结构计算的输入,在Wannier的基础上,为Wannier构造了低能Hubbard型磁激活Co3d能带模型,并在平均场Hartree-Fock近似中求解了该模型。 ,并根据Berry相理论评估电极化。实验和理论结果均表明Co4Ta2O9的磁性比Co4Nb2O9的软。因此,可以合理地预期到Co4Ta2O9的反铁磁结构会更容易因外部磁场而变形,从而产生更大的极化。我们的理论计算确实重现了这种趋势,但似乎与极化和介电常数的实验行为不一致。因此,我们建议在这些化合物中应该存在一个隐藏的机制来控制ME耦合,这可能与磁约束或磁结构的自发变化有关,这破坏了反演对称性。此外,我们认为与其他ME系统(例如Cr2O3)不同,在Co4Nb2O9和Co4Ta2O9中存在两个结晶亚晶格,它们有助于ME效应。发现这些贡献具有相反的符号,并且倾向于相互补偿。后一种机理也可用于控制和逆转这些化合物中的极化。

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