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Electrodynamic Calculation of Effective Electromagnetic Parameters of a Dielectric Medium with Metallic Nanoparticles of a Given Size

机译:具有给定尺寸的金属纳米粒子的介电介质有效电磁参数的电动计算

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摘要

The frequency dependence of the effective complex permittivity and effective complex permeability of a heterostructure based on a dielectric medium containing metallic nanoparticles of spherical shape is calculated by an original method. In contrast to the Bruggeman [21] and the Maxwell Garnett [17] approaches, which use the quasi-static approximation in calculations, a nonuniform distribution of electromagnetic fields inside metallic particles is calculated, which allows the analysis of the electromagnetic parameters of the heterostructure not only as a function of frequency but also as a function of the nanoparticle size. It is shown that the plasmon resonant frequency decreases with increasing both the size and the concentration of particles in the heterostructure. It is also shown that a dielectric medium containing nonmagnetic metallic nanoparticles exhibits diamagnetic properties. In this case, the position of the maximum on the frequency dependence of the imaginary part of the magnetic susceptibility coincides with the relaxation frequency of charge carriers. The calculated spectra of the real and imaginary components of the permittivity of the heterostructure with a size of metallic particles less than 10 nm are in good agreement with Bruggeman calculations; however, the agreement with Maxwell Garnett calculations is observed only at nanoparticle concentrations lower than 10(-6).
机译:通过原始方法计算基于含有球形形状的金属纳米颗粒的介电介质的有效复杂介电常数和有效复合渗透性的频率依赖性。与Brugmeman [21]相比,使用在计算中使用准静态近似的Maxwell Garnett [17]方法计算金属颗粒内的电磁场的非均匀分布,这允许分析异质结构的电磁参数不仅是频率的函数,而且作为纳米粒子尺寸的函数。结果表明,等离子体谐振频率随着异质结构中的颗粒的尺寸和浓度而降低。还表明,含有非磁性金属纳米颗粒的介电介质表现出抗磁性性质。在这种情况下,最大位置对磁敏性的虚部的频率依赖性的位置与电荷载体的弛豫频率一致。计算出的异性结构的真实和虚部分量的光谱与小于10nm的金属颗粒的尺寸与Brugmeman计算有关;然而,仅在低于10(-6)的纳米粒子浓度下观察到Maxwell Garnett计算的协议。

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