首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Artificial magnetism at terahertz frequencies from three-dimensional lattices of TiO_2 microspheres accounting for spatial dispersion and magnetoelectric coupling
【24h】

Artificial magnetism at terahertz frequencies from three-dimensional lattices of TiO_2 microspheres accounting for spatial dispersion and magnetoelectric coupling

机译:TiO_2微球三维晶格中太赫兹频率的人工磁性,解释了空间色散和磁电耦合

获取原文
获取原文并翻译 | 示例
           

摘要

We employ the generalized Lorentz–Lorenz method to investigate how both magnetoelectric coupling and spatial dispersion influence the artificial magnetic capabilities at terahertz frequencies of the representative case of a metamaterial consisting of a three-dimensional (3D) lattice of TiO_2 microspheres. The complex wavenumber dispersion relations pertaining to modes supported by the array, traveling along one of the principal axes of the array with electric or magnetic field polarized transversely and longitudinally (with respect to the mode traveling direction), are studied and thoroughly characterized. One mode with transverse polarization is dominant at any given frequency for the analyzed dimensions, proving that the 3D lattice can be treated as a homogeneous medium with defined electromagnetic material parameters. We show, however, that bianisotropy is a direct consequence of magnetoelectric coupling, and the dyadic expressions of both effective and equivalent material parameters are derived. In particular, we analyze the effect of spatial dispersion on the effective parameters relative to a composite material made by a 3D lattice of TiO_2 microspheres with filling fraction around 30% and near the first Mie magnetic dipolar resonance. Finally, we homogenize the metamaterial in terms of equivalent index and impedance, and by comparison with full-wave simulations, we explain the presence of the unphysical antiresonance permittivity behavior observed in previous work.
机译:我们采用广义的Lorentz-Lorenz方法研究磁电耦合和空间色散如何影响以TiO_2微球的三维(3D)晶格构成的超材料的典型情况在太赫兹频率下的人工磁性能。研究并彻底表征了与阵列支持的模式有关的复波数色散关系,该模式沿着阵列的主轴之一传播,其中电场或磁场横向和纵向极化(相对于模式传播方向)。对于所分析的尺寸,具有横向极化的一种模式在任何给定的频率上都是主要的,证明了3D晶格可以被视为具有定义的电磁材料参数的均匀介质。但是,我们表明,各向异性是磁电耦合的直接结果,并且可以得出有效和等效材料参数的二进式表达式。尤其是,我们分析了相对于由TiO_2微球的3D晶格制成的复合材料(其填充率约为30%且接近第一Mie磁偶极共振)而言,空间色散对有效参数的影响。最后,我们根据等效指数和阻抗对超材料进行均质化,并通过与全波模拟进行比较,我们解释了先前工作中观察到的非物理反共振介电常数行为。

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