首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Tetra-hyperbolic and tri-hyperbolic optical phases in anisotropic metamaterials without magnetoelectric coupling due to hybridization of plasmonic and magnetic Bloch high-k polaritons
【24h】

Tetra-hyperbolic and tri-hyperbolic optical phases in anisotropic metamaterials without magnetoelectric coupling due to hybridization of plasmonic and magnetic Bloch high-k polaritons

机译:各向异性超材料中的Tetra双曲线和三 - 双曲光学相,由于偏振和磁性波强性杂交而导致磁电联轴器

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper we reveal the physics behind the formation of tri- and tetra-hyperbolic phases in anisotropic metamaterials without magnetoelectric coupling and describe the anti-crossing splitting phenomenon in the hyperbolic dispersion which arises due to the hybridization of the plasmonic and magnetic Bloch high-k polaritons. In hyperbolic metamaterials used for sensing, imaging, and other applications the high-k modes are purely magnetic or electric, which results in purely electric (magnetic) near-fields in response to electric (magnetic) sources. The hybridization predicted in this paper leads to the formation of high-k modes which feature both electric and magnetic fields. This can be used to induce magnetic near fields in response to electric dipole in realistic structures which opens novel avenues in the optical magnetism research. Our work considerably deepens the understanding of the high-k polaritons and the topology of the optical iso-frequency surfaces in k-space and will find applications in optical nano-resolution imaging, emission rate, directivity, and near-field control. To accomplish this, we develop a range of new techniques of theoretical optics for bianisotropic materials, including the quadratic index of refraction operator method, suitable to study the high-k polaritons with finite indices of refraction and the explicit expression for the characteristic matrix in generic bianisotropic media. We introduce the spatial stratification approach for the electric and magnetic responses of anisotropic homogeneous media to analyze the underlying Bloch waves. We believe that the formalisms developed here can be useful for the researchers in the field of theoretical optics of anisotropic and bianisotropic media in the future.
机译:在本文中,我们揭示了在没有磁电耦合的各向异性超材料中形成的三曲和四双曲线相背后的物理学,并描述了双曲分散中的反交叉分裂现象,这是由于等离子体和磁性布切的杂交而导致的K Polaritons。在用于传感,成像和其他应用的双曲线超材料中,高k模式纯磁或电,这导致响应电(磁性)源的纯电(磁性)近场。本文预测的杂交导致形成具有电动和磁场的高k模式。这可用于响应于在光学磁性研究中开启新颖的途径的现实结构中的电偶极子响应电偶极子而诱导磁性偶像。我们的工作大大加深了对K空间中光学异频表面的高k极性膜的理解和光学ISO频率表面的拓扑,并将在光学纳米分辨率成像,发射率,方向性和近场控制中找到应用。为了实现这一目标,我们为双程度材料制定了一系列新的理论光学技术,包括折射算子方法的二次指标,适用于研究高k极性官,有限折射率和泛型特征矩阵的明确表达双行培养基。我们介绍了各向异性均匀介质的电磁反应的空间分层方法,分析了底层的光波。我们认为,这里开发的形式主义对于未来各向异性和双程度媒体的理论光学领域的研究人员有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号