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Probing split-ring resonator permeabilities with loop-gap resonators

机译:具有环形间隙谐振器的分流环谐振器渗透

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A method is proposed to experimentally determine the effective complex permeability of split-ring resonator (SRR) arrays used in the design of metamaterials at microwave frequencies. We analyze the microwave response of a loop-gap resonator (LGR) whose bore has been partially loaded with one or more SRRs. Our analysis reveals that the resonance frequency, magnetic plasma frequency, and damping constant of the effective permeability of the SRR array can be extracted from fits to the reflection coefficient (S-11) of an inductively coupled LGR. We propose LGR designs that would allow both a one-dimensional array of SRRs and small three-dimensional arrays of SRRs to be characterized. Finally, we demonstrate the method using a toroidal LGR loaded with a single extended SRR of length z.
机译:提出了一种方法来实验确定微波频率在超材料设计中使用的分流环谐振器(SRR)阵列的有效复合渗透性。 我们分析了孔部分地装载了一个或多个SRRS的环形间隙谐振器(LGR)的微波响应。 我们的分析显示,SRR阵列的有效磁导率的共振频率,磁等离子体频率和阻尼常数可以从拟合到电感耦合LGR的反射系数(S-11)中提取。 我们提出了LGR设计,这些设计将允许特征的一维的SRR和小型三维阵列。 最后,我们通过装载具有长度Z的单个扩展SRR的环形LGR来证明该方法。

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