首页> 外文期刊>Journal of Superconductivity >Computations of Unloaded Q{sub}0-Factor and Resonant Frequency of the TE{sub}011 Mode Hakki-Coleman Dielectric Resonators with Coupling Structures using ANSOFT HFSS
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Computations of Unloaded Q{sub}0-Factor and Resonant Frequency of the TE{sub}011 Mode Hakki-Coleman Dielectric Resonators with Coupling Structures using ANSOFT HFSS

机译:使用ANSOFT HFSS计算具有耦合结构的TE {sub} 011模式Hakki-Coleman介质谐振器的空载Q {sub} 0因子和谐振频率

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Microwave characterization of materials using dielectric resonators is based on measurements of the Q-factor of the resonator containing a sample under test and on the loss equation for the test structure. The loss equation contains geometrical factors, which are calculated assuming an ideal metallic cavity of the resonator. In this paper a rigorous analysis of cylindrical parallel plate dielectric resonators has been performed to assess the influence of the presence of coupling holes and cables on the unloaded Q-factor and resonant frequency. Calculations have been done for the TE011 mode resonators with differing cavity to dielectric diameter ratio, conductivity of the cavity material, loss tangent and relative permittivity of the dielectric rod, position of the coupling loops and size of the coupling cables. Results have shown that Qo-factors calculated for real resonators were smaller than Qo-factors for ideal resonators. Also this paper presents a brief history of analysis of dielectric resonators.
机译:使用介电共振器对材料进行微波表征是基于对包含被测样品的共振器的Q因子的测量以及测试结构的损耗方程。损耗方程包含几何因子,这些几何因子是在假设谐振器具有理想金属腔的情况下计算得出的。在本文中,已经对圆柱平行板介电谐振器进行了严格的分析,以评估耦合孔和电缆的存在对空载Q因子和谐振频率的影响。已经针对具有不同的腔与介电直径比,腔材料的电导率,介电棒的损耗角正切和相对介电常数,耦合环的位置以及耦合电缆的尺寸的TE011模式谐振器进行了计算。结果表明,为实际谐振器计算的Qo因子小于理想谐振器的Qo因子。本文还介绍了介电谐振器的简要分析历史。

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