Behavior of έ(ω) and tan δ for a class of low-loss materials

J. Baker-Jarvis, M. Janezic, B. Riddle, S. Kim
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引用次数: 2

Abstract

We report a study on the relaxation behavior of the real part of the permittivity. We also discuss the loss tangent of a class of materials in the microwave to millimeter band of frequencies. For relaxation response we show that the permittivity is a monotonic decreasing function of frequency. Also, for many low-loss ceramics, glasses, crystals, and solid polymers we found that the loss tangent increases nearly linearly with frequency. This linearity is explained in terms of the pulse-response function and the Sparks-King-Mills model. We show that the linearity may be used to extrapolate the loss tangent beyond the measurement band.
一类低损耗材料的έ(ω)和tan δ的行为
本文报道了介电常数实部弛豫行为的研究。我们还讨论了一类材料在微波至毫米波段的损耗正切。对于松弛响应,我们证明了介电常数是频率的单调递减函数。此外,对于许多低损耗陶瓷、玻璃、晶体和固体聚合物,我们发现损耗正切几乎随频率线性增加。这种线性用脉冲响应函数和Sparks-King-Mills模型来解释。我们表明,线性可以用来外推损耗的正切超出测量带。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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