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Cavity perturbation technique for the measurement of permittivity tensor of uniaxially anisotropic dielectrics

机译:腔扰动技术测量单轴各向异性电介质的介电常数张量

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Based on microwave resonant perturbation theory, a bimodal TE/sub 112/ cylindrical cavity is developed for the measurement of permittivity tensor of uniaxially anisotropic dielectrics. The two perpendicular TE/sub 112/ degenerate modes in the cavity are used to measure the two complex components in the permittivity tensor of a uniaxial sample, respectively. In the measurement of each component, only the corresponding mode resonates in the bimodal cavity, and the real and imaginary parts of the complex component are deduced from the changes of the resonant frequency and the quality factor of the cavity due to sample insertion. In the present technique, the quality factors of the cavity before and after sample insertion are measured at the same frequency, so the uncertainties caused by the variation of the total stored energy in the cavity due to sample insertion are eliminated. Experimental results show that the present technique is accurate and reliable for the measurement of the permittivity tensor of uniaxial media. As an example, the dielectric properties of /spl alpha/-SiO/sub 2/ samples with different crystal orientations are characterized using the present technique.
机译:基于微波共振微扰理论,开发了一种双峰TE / sub 112 /圆柱腔,用于测量单轴各向异性电介质的介电常数张量。腔中的两个垂直TE / sub 112 /简并模分别用于测量单轴样品介电常数张量中的两个复杂分量。在每个成分的测量中,只有相应的模在双峰腔中谐振,并且由于样品的插入,谐振腔的谐振频率和品质因数的变化推导出了复杂成分的实部和虚部。在本技术中,以相同的频率测量样品插入之前和之后的腔的品质因数,因此消除了由于样品插入导致的腔中总存储能量的变化所引起的不确定性。实验结果表明,该技术对于单轴介质介电常数张量的测量是准确可靠的。例如,使用本技术表征具有不同晶体取向的/ spl alpha / -SiO / sub 2 /样品的介电性能。

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