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首页> 外文期刊>Journal of optics >Analysis of nonlocal effective permittivity and permeability in symmetric metal-dielectric multilayer metamaterials
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Analysis of nonlocal effective permittivity and permeability in symmetric metal-dielectric multilayer metamaterials

机译:对称金属电介质多层超材料的非局部有效介电常数和磁导率分析

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摘要

A generalized nonlocal effective medium theory is derived based on the transfer-matrix method to determine the nonlocal effective permittivity and permeability for the symmetric and periodic metal-dielectric multilayer metamaterials, with respect to both transverse-electric and transverse-magnetic polarized light at arbitrary angle of incidence. The nonlocal effective permittivity and permeability tensors are analyzed in detail as functions of the wavelength, the angle of incidence, and the multilayer period. Our generalized nonlocal effective medium theory in consideration of both permittivity and permeability can accurately predict the dispersion relation, the transmission and reflection spectra, and the optical field distributions of symmetric metal-dielectric multilayer stacks with either subwavelength or wavelength-scale period of the unit cell.
机译:基于传递矩阵法,推导了广义非局部有效介质理论,用于确定对称和周期性金属介电多层超材料相对于任意角度的横向和横向极化光的非局部有效介电常数和磁导率的发病率。随波长,入射角和多层周期的函数详细分析了非局部有效介电常数和磁导率张量。我们兼顾介电常数和磁导率的广义非局部有效介质理论可以准确预测具有单位单元的亚波长或波长尺度周期的对称金属-电介质多层堆叠的色散关系,透射和反射光谱以及光场分布。

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