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The effect of superconducting ground plane on microwavecharacteristics of unpatterned superconducting films in the mixed state

机译:超导地平面对混合态无图案超导薄膜微波特性的影响。

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We microwave characteristics of a multilayer structure made of a type-II superconducting thin film and a dielectric substrate together with a superconducting ground plane is studied theoretically by using the model of the self-consistent treatment of vortex dynamics. The dependence of reflection coefficient on the temperature and static magnetic field is reduced owing to the existence of the superconducting ground plane, especially at temperatures near Tc and at higher fields. Comparison of the interesting oscillation phenomenon in the associated effective surface resistance between the Meissner state (b=0) and mixed state (b≠0) is made. We find that the superconducting ground plane not only strongly narrows down the resonant peak shape but also enhances the peak height. Finally, a similar layered structure made of a superconducting thin film on a dielectric substrate shielded by a buffer layer is also considered. We specifically demonstrate that the buffer layer has essentially no substantial influence on microwave reflectance, transmittance, and complex surface impedance. The role played by the buffer layer is in great contrast to that in a planar transmission line
机译:我们利用涡流动力学的自洽处理模型,从理论上研究了由II型超导薄膜和电介质衬底以及超导接地平面组成的多层结构的微波特性。由于超导接地平面的存在,减少了反射系数对温度和静磁场的依赖性,特别是在Tc附近和较高磁场下。比较了迈斯纳状态(b = 0)和混合状态(b≠0)之间相关的有效表面电阻中有趣的振荡现象。我们发现,超导接地平面不仅极大地缩小了共振峰的形状,而且提高了峰高。最后,还考虑了在由缓冲层屏蔽的介电基板上由超导薄膜制成的类似层状结构。我们具体证明,缓冲层对微波反射率,透射率和复杂的表面阻抗基本没有实质性影响。缓冲层所扮演的角色与平面传输线中的角色形成鲜明对比

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