谐振腔中生物各向同性样品的微扰理论及其在测量技术中的应用

S. Tretyakov, A. Viitanen
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引用次数: 2

摘要

讨论了用于探索生物各向同性(非互易手性)材料电磁参数的谐振器测量技术。生物各向同性材料是最常见的线性各向同性材料,其本构关系受四个复杂材料参数的支配。提出了基于微扰分析的谐振器测量技术理论。结果表明,通过测量矩形谐振腔内的谐振频移,可以确定小样品的复介电常数、磁导率和非互易参数。为了测量非互易参数,提出了一种利用双简并模矩形谐振腔测量非互易参数的方法。
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Perturbation Theory for a Biisotropic Sample in a Cavity Resonator with Applications to Measurement Techniques
Resonator measurement techniques for exploring electromagnetic parameters of of biisotropic (non-reciprocal chiral) materials are discussed. The biisotropic materials are the most general linear isotropic materials and the corresponding constitutive relations are governed by four complex material parameters. The theory of resonator measurement techniques, based on the perturbation analysis, is developed. It is shown that the complex permittivity, permeability and the non-reciprocity (Tellegen) parameter of a small sample can be determined by measuring resonant frequency shifts in a rectangular resonator. To measure the non-reciprocity parameter, a method utilizing a rectangular resonator with two degenerated modes is proposed.
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