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Finite-size effects on the magnetoelectric response of field-driven ferroelectric/ferromagnetic chains

机译:有限尺寸对现场驱动铁电/铁磁链磁电响应的影响

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We study theoretically the coupled multiferroic dynamics of a finite one-dimensional ferroelectric/ferromagnet chain driven by harmonic magnetic and electric fields as a function of the chain length. We consider the case of a linear magnetoelectric coupling that results from the spin-polarized screening charge at the interface. We performed Monte-Carlo simulations and calculations based on the coupled Landau-Lifshitz-Gilbert and Landau-Khalatnikov equations showing that the net magnetization and the total polarization of thin heterostructures, i.e. with up to ten ferroelectric and ferromagnetic sites counted from the interface, can be completely reversed by external electric and magnetic fields, respectively. However, for larger systems merely a limited magnetoelectrical control is achievable.
机译:理论上,我们在理论上研究了由谐波长度的谐波磁场和电场驱动的有限一维铁/铁磁体链的耦合多体动力学。我们考虑用界面处的旋转偏振筛分电荷产生线性磁电联接的情况。我们进行了基于耦合的Landau-Lifshitz-Gilbert和Landau-Khalatnikov方程的Monte-Carlo模拟和计算,表明净磁化和薄异质结构的总极化,即最多有10个从界面计算的铁磁性和铁磁位点,可以分别由外部电场和磁场完全逆转。然而,对于较大的系统仅是有限的磁电控制是可实现的。

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