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首页> 外文期刊>Microwave and optical technology letters >BUILDING A RESONANT CAVITY FOR THE MEASUREMENT OF MICROWAVE DIELECTRIC PERMITTIVITY OF HIGH LOSS MATERIALS
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BUILDING A RESONANT CAVITY FOR THE MEASUREMENT OF MICROWAVE DIELECTRIC PERMITTIVITY OF HIGH LOSS MATERIALS

机译:建立共振腔以测量高损耗材料的微波介电常数

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The design of a cavity resonator implies to solve the Maxwell equations inside that cavity, respecting the boundary conditions. As a consequence, the resonance frequencies appear as conditions in the solutions of the differential equation involved. The measurement of the complex permittivity, ε{sup}* = ε'-iε", can be made using the small perturbation theory. In this method, the resonance frequency and the quality factor of the cavity, with and without a sample, can be used to calculate the complex dielectric permittivity of the material. We measure the shift in the resonant frequency of the cavity, Δf, caused by the insertion of the sample inside the cavity, which can be related to the real part of the complex permittivity, ε', and the change in the inverse of the quality factor of the cavity, Δ(1/Q), which can be related with the imaginary part, ε". This is valid for very small perturbations of the electric field inside the cavity by the insertion of a sample. For materials with high losses, the perturbation can be very high, making impracticable the use of this technique. The solution is to use high volume cavities. In this work we report the design and the performance tests of a cavity to be used with high loss materials.
机译:腔谐振器的设计意味着在考虑边界条件的情况下求解该腔内部的麦克斯韦方程。结果,共振频率在所涉及的微分方程的解中作为条件出现。可以使用小扰动理论来测量复介电常数ε{sup} * =ε'-iε“。在这种方法中,无论有无样品,谐振腔的谐振频率和品质因数都可以用来计算材料的复介电常数我们测量了由于谐振腔内样品的插入而引起的谐振腔频率Δf的变化,这可能与复介电常数的实部有关, ε',以及腔质量因数的倒数变化Δ(1 / Q),它与虚部ε“有关。这对于通过插入样品对空腔内部的电场产生很小的扰动是有效的。对于具有高损耗的材料,扰动可能会非常高,因此无法使用该技术。解决方案是使用大体积的腔体。在这项工作中,我们报告了与高损耗材料一起使用的型腔的设计和性能测试。

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