Marksteiner Quinn R, Treiman Michael B, Chen Ching-Fong, Haynes William B, Reiten M T, Dalmas Dale, Pulliam Elias
Los Alamos National Laboratory, AOT Division, P.O. Box 1663, Los Alamos, New Mexico 87545, USA.
CapTel, 450 Science Drive, Madison, Wisconsin 53711, USA.
Rev Sci Instrum. 2017 Jun;88(6):064704. doi: 10.1063/1.4984269.
A resonant cavity method is presented which can measure loss tangents and dielectric constants for materials with dielectric constant from 150 to 10 000 and above. This practical and accurate technique is demonstrated by measuring barium strontium zirconium titanate bulk ferroelectric ceramic blocks. Above the Curie temperature, in the paraelectric state, barium strontium zirconium titanate has a sufficiently low loss that a series of resonant modes are supported in the cavity. At each mode frequency, the dielectric constant and loss tangent are obtained. The results are consistent with low frequency measurements and computer simulations. A quick method of analyzing the raw data using the 2D static electromagnetic modeling code SuperFish and an estimate of uncertainties are presented.
提出了一种谐振腔方法,该方法可测量介电常数在150至10000及以上的材料的损耗角正切和介电常数。通过测量钛酸锶钡锆块状铁电陶瓷块证明了这种实用且准确的技术。在居里温度以上,处于顺电态时,钛酸锶钡锆的损耗足够低,以至于在腔中支持一系列谐振模式。在每个模式频率下,可获得介电常数和损耗角正切。结果与低频测量和计算机模拟一致。还介绍了一种使用二维静态电磁建模代码SuperFish分析原始数据的快速方法以及不确定度估计。