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首页> 外文期刊>IEEE Transactions on Magnetics >Microwave Interferometry for High Sensitivity VNA-FMR Measurements
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Microwave Interferometry for High Sensitivity VNA-FMR Measurements

机译:微波干涉法用于高灵敏度VNA-FMR测量

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Two-port vector network analyzer ferromagnetic resonance (VNA-FMR) measurements using coplanar waveguides (CPWs) are a fast and powerful tool for the analysis of ferromagnetic film parameters, including damping and effective field contributions like anisotropies, exchange coupling, and demagnetization fields. Thereby, VNA-FMR appears to be a good choice for the analysis of patterned magnetic nanostructures showing a rich spectrum of different anisotropy terms. However, due to their small volume, the absorption of nanostructures in FMR is low and the measurement signal is superimposed by the excitation signal. To eliminate the background signal, we propose an interferometric approach with the following two key features: 1) the reference path has the same geometry as the measurement path, including an identical but empty CPW parallel to the measurement CPW to remove spurious field dependent contributions to the signal and 2) additionally, we extend the reference path by 0.5 m of an RF coaxial cable. This path length difference leads to a frequency-dependent phase difference of the two paths, assuming a value of 180 ° in ≈ 500 MHz intervals. Here, the excitation RF signals from both paths add to zero. In broadband measurements, this simple approach allows to obtain a sufficient number of grid points for dispersion analysis without the need for a phase shifter. Our experiments reveal an improvement of the sensitivity by up to two orders in magnitude under optimum conditions. The amplitude and the shape of the resonance peaks will be discussed.
机译:使用共面波导(CPW)的两端口矢量网络分析仪铁磁共振(VNA-FMR)测量是一种快速而强大的工具,可用于分析铁磁膜参数,包括阻尼和有效磁场贡献(如各向异性,交换耦合和退磁场)。因此,VNA-FMR似乎是分析图案化的磁性纳米结构的好选择,该结构显示了丰富的不同各向异性项。但是,由于其体积小,FMR中纳米结构的吸收率低,并且测量信号被激励信号叠加。为了消除背景信号,我们提出了一种干涉测量方法,该方法具有以下两个主要特征:1)参考路径与测量路径具有相同的几何形状,包括与测量CPW平行但相同的空CPW,以消除与杂散场有关的影响2)此外,我们将参考路径延伸了0.5 m的RF同轴电缆。假设在≈500 MHz的间隔内值为180°,则该路径长度差会导致两条路径的频率相关相位差。此处,来自两条路径的激励RF信号加到零。在宽带测量中,这种简单的方法允许获得足够数量的网格点以进行色散分析,而无需移相器。我们的实验表明,在最佳条件下,灵敏度最多可提高两个数量级。将讨论共振峰的幅度和形状。

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