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Microwave magnetoelectric fields: An analytical study of topological characteristics

机译:微波电磁场:拓扑特性的分析研究

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摘要

The near fields originated from a small quasi-two-dimensional ferrite disk with magnetic-dipolar-mode (MDM) oscillations are the fields with broken dual (electric-magnetic) symmetry. Numerical studies show that such fields - called the magnetoelectric (ME) fields - are distinguished by the power-flow vortices and helicity parameters (E.O. Kamenetskii, R. Joffe, R. Shavit, Phys. Rev. E 87 (2013) 023201). These numerical studies can well explain recent experimental results with MDM ferrite disks. In the present paper, we obtain analytically topological characteristics of the ME-field modes. For this purpose, we used a method of successive approximations. In the second approximation we take into account the influence of the edge regions of an open ferrite disk, which are excluded in the first-approximation solving of the magnetostatic (MS) spectral problem. Based on the analytical method, we obtain a "pure" structure of the electric and magnetic fields outside the MDM ferrite disk. The analytical studies can display some fundamental features that are non-observable in the numerical results. While in numerical investigations, one cannot separate the ME fields from the external electromagnetic (EM) radiation, the present theoretical analysis allows clearly distinguish the eigen topological structure of the ME fields. Importantly, this ME-field structure gives evidence for certain phenomena that can be related to the Tellegen and bianisotropic coupling effects. We discuss the question whether the MDM ferrite disk can exhibit properties of the cross magnetoelectric polarizabilities.
机译:源自具有磁偶极模式(MDM)振荡的小的准二维铁氧体圆盘的近场是具有破坏的双(电磁)对称性的场。数值研究表明,这种场-称为磁电(ME)场-通过功率流涡旋和螺旋度参数来区分(E.O. Kamenetskii,R.Joffe,R.Shavit,Phys.Rev E 87(2013)023201)。这些数值研究可以很好地解释MDM铁氧体磁盘的最新实验结果。在本文中,我们获得了ME场模式的解析拓扑特征。为此,我们使用了逐次逼近的方法。在第二种近似中,我们考虑了开放式铁氧体圆盘边缘区域的影响,该影响在静磁(MS)光谱问题的第一种近似求解中被排除。基于分析方法,我们获得了MDM铁氧体圆盘外部电场和磁场的“纯”结构。分析研究可以显示一些基本特征,这些基本特征在数值结果中是无法观察到的。虽然在数值研究中,无法将ME场与外部电磁(EM)辐射区分开,但本理论分析可以清楚地区分ME场的本征拓扑结构。重要的是,这种ME场结构为某些现象提供了证据,这些现象可能与Tellegen和bianisotropic耦合效应有关。我们讨论了MDM铁氧体圆盘是否可以表现出交叉磁电极化率的问题。

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  • 来源
    《Journal of magnetism and magnetic materials》 |2015年第10期|6-21|共16页
  • 作者单位

    Microwave Magnetic Laboratory, Department of Electrical and Computer Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel,Department of Electrical and Electronics Engineering, Shamoon College of Engineering, Beer Sheva, Israel;

    Microwave Magnetic Laboratory, Department of Electrical and Computer Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel;

    Microwave Magnetic Laboratory, Department of Electrical and Computer Engineering, Ben Gurion University of the Negev, Beer Sheva, Israel;

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  • 入库时间 2022-08-18 03:29:37

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