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Magnetic polaritons, magnetostatic waves and effective-medium approximation for antiferromagnetic superlattice with impurity in parallel magnetic field

机译:平行磁场中具有杂质的反铁磁超晶格的磁极化子,静磁波和有效介质近似

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摘要

We derive the general effective-medium expression for the surface-guided magnetic polaritons and magnetostatic waves, which propagate in the antiferromagnetic superlattice with antiferromagnetic impurity film, and investigate the influence of the external magnetic field on the energy of localized magnetic polaritons. Similarly as in the free-standing antiferromagnetic film, the spectrum of magnetic polaritons in the presence of an external magnetic field is reciprocal in the sense that the frequency is independent of the direction of propagation. In the system under consideration one finds both the surface polaritons which are strongly localized in the antiferromagnetic film which acts as a waveguide, and waves which are weakly localized within film. The first waves are the pure surface modes or guided modes where excitations have a standing-wavelike character. This important feature of the localized magnetic polaritons enables us to use these antiferromagnetic systems in the technologies for devices (for example, in resonators) that work at wavelengths in the infrared region. Second waves have the very small value of the decay parameter and appear in the regions where the surface mode penetrates into the bulk band, i.e. the magnetic polaritons are weakly localized in the impurity film region. Now we obtain themixed type mode having both bulk and surface characteristics. Also, the general way in which the dispersion curves vary with the volume fraction of the superlattice components and with impurity film is illustrated in this study. © Springer Science+Business Media, LLC 2011.
机译:我们推导了在具有反铁磁杂质膜的反铁磁超晶格中传播的表面引导磁极化子和静磁波的一般有效介质表达式,并研究了外部磁场对局部磁极化子能量的影响。类似于自支撑反铁磁膜,在频率与传播方向无关的意义上,存在外部磁场的情况下磁极化子的频谱是互易的。在所考虑的系统中,人们既发现了在极化器中起着强定位作用的反铁磁薄膜中的表面极化子,又在薄膜中发现了弱极化的波。第一波是纯表面模式或引导模式,其中激发具有驻波状特征。局部磁极化子的这一重要特征使我们能够在工作于红外区域波长的设备(例如,谐振器)中使用这些反铁磁系统。第二波具有非常小的衰减参数值,并且出现在表面模式渗透到体能带的区域中,即,磁极化子弱地定位在杂质膜区域中。现在,我们获得了具有体积和表面特性的混合型模式。此外,在这项研究中,还说明了色散曲线随超晶格成分的体积分数和杂质膜而变化的一般方式。 ©Springer Science + Business Media,LLC 2011。

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  • 作者

    Tagiyeva, R.T.; Tanatar, B.;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 English
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