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Hemispherical quasi-optical dielectric resonators as possible sensors for impedance measurements of superconductors

机译:半球形准光学介质谐振器可能是超导体阻抗测量的传感器

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In the present paper a problem is set to investigate the spectrum and Q-factor hemispherical quasi-optical dielectric resonators (QDRs) and specialities of their excitation as well as to evaluate filling coefficient A/sub s/ of a conductor. The resonator made of Teflon and ceramics BaMgTaO (BMT) proved by Murata are studied. The Teflon resonator and BMT ones are fulfilled in such a way that their electrical dimensions are nearly equal. The measurements are performed in Ka-band at room temperature for Teflon resonator and in 77 K-300 K temperature interval for BMT. It is experimentally shown that in hemisphere QDR with the impedance endplate the WG mode waves are excited and spread along the plate. The waves can be of two types H and E. Both waves are excited by means of image dielectric waveguides. For the purpose of the impedence measurement of conductors and superconductors, preference must be given to H-waves. The QDRs are applied for impedance measurements based on superconductors.
机译:本文提出了一个问题,以研究频​​谱和Q因子半球形准光学介质谐振器(QDR)及其激励特性,以及评估导体的填充系数A / sub s /。研究了铁氟龙制成的谐振器和村田制作所证明的陶瓷BaMgTaO(BMT)。铁氟龙谐振器和BMT谐振器的电气尺寸几乎相等。对于Teflon谐振器,测量是在室温下的Ka波段中进行的;对于BMT,测量是在77 K-300 K的温度区间中进行的。实验表明,在带有阻抗终板的半球QDR中,WG模式波被激发并沿该板传播。这些波可以是H型和E型两种。这两种波均通过图像介电波导激发。为了测量导体和超导体的阻抗,必须优先考虑H波。 QDR用于基于超导体的阻抗测量。

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