Ultra-Broadband Material Spectroscopy from Scattering Parameters Obtained from Time Domain Measurements

被引:0
|
作者
Bandla, Ajay [1 ]
Hager, Nathaniel, III [2 ]
Tofighi, Mohammad-Reza [1 ]
机构
[1] Penn State Univ, Capital Coll, Elect Engn, Middletown, PA 17057 USA
[2] Elizabethtown Coll, Dept Phys & Engn, Elizabethtown, PA 17022 USA
来源
2014 IEEE BENJAMIN FRANKLIN SYMPOSIUM ON MICROWAVE AND ANTENNA SUB-SYSTEMS FOR RADAR, TELECOMMUNICATIONS, AND BIOMEDICAL APPLICATIONS (BENMAS) | 2014年
关键词
Fast Fourier transforms; open-ended coaxial probe; complex permittivity; reflection coefficient; scattering parameters;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Scattering parameter measurements can provide a key insight towards understanding material properties, pertaining to permittivity. The relaxation phenomena (e.g. free and bond water relaxation) and the frequencies at which they occur can convey valuable information in dielectric spectroscopy for material process monitoring and biology research. These relaxations can range from kHz to GHz range. Extracting the reflection/transmission coefficients or scattering parameters from time domain measurements over a broad range of frequencies, from kHz to GHz, can be challenging. The current approach often employed by material scientists involves performing Laplace transform, through a numerical integration, on the time domain data. On the other hand, the more computationally efficient fast Fourier transform (FFT) techniques have been well-developed and widely used in the engineering community. In this study, we propose a method, based on fast Fourier transform (FFT) of non-uniformly sampled time domain reflectometry (TDR) data, to obtain the frequency domain information in an ultra-broadband range from kHz to GHz. We test this method to known lossy materials.
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页数:3
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