首页> 外文期刊>Physica status solidi, B. Basic research >Magnetic-field-induced polarization and magnetocapacitance in quantum paraelectric EuTiO3
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Magnetic-field-induced polarization and magnetocapacitance in quantum paraelectric EuTiO3

机译:量子顺电EuTiO3中的磁场感应极化和磁电容

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摘要

EuTiO3 is a quantum paraelectric as well as an antiferromagnet. The most attractive property for EuTiO3 is the magnetoelectric coupling effect. In the present work, we investigate the influence of the external fields on EuTiO3, including the electric field E and magnetic field h. The application of the electric field counteracts the quantum fluctuation and forces the system into an electrically ordered state. The applied magnetic field directly induces the fluctuation of the spin-pair correlation and indirectly influences the dielectric behaviors through the magnetoelectric coupling. In addition, we notice that the contribution of the magnetic field depends closely on the temperature condition and the electric field background. The (p, h, E, T) and (epsilon, h, T) diagrams are presented showing the temperature, magnetic and electric field dependence of the polarization and the dielectric capacitance.
机译:EuTiO3是一种量子顺电体,也是一种反铁磁体。 EuTiO3最吸引人的特性是磁电耦合效应。在目前的工作中,我们研究了外部电场对EuTiO3的影响,包括电场E和磁场h。电场的施加抵消了量子涨落,并迫使系统进入电有序状态。施加的磁场直接引起自旋对相关性的波动,并通过磁电耦合间接影响介电行为。此外,我们注意到磁场的贡献密切取决于温度条件和电场背景。给出了(p,h,E,T)和(epsilon,h,T)图,显示了极化和介电电容的温度,磁场和电场依赖性。

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