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Frequency dependence of the microwave surface resistance of MgB2 by coaxial cavity resonator

机译:同轴谐振腔对MgB2微波表面电阻的频率依赖性

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摘要

We report on the microwave (mw) properties of a cylindrical MgB2 rod prepared by the reactive liquid Mg infiltration technology. The MgB2 rod, 94.3 mm long, is used as inner conductor of a coaxial cavity having a Cu tube as external conductor. By analyzing the resonance curves of the cavity in the different resonant modes and at different temperatures, we have determined the temperature dependence of the mw surface resistance, Rs, of the MgB2 material, at fixed frequencies, and the frequency dependence of Rs, at fixed temperatures. Our results show that the Rs(f) curves follow a f^n law, where n decreases on increasing the temperature, starting from n=2, at T=4.2 K, down to n=0.7 at T>Tc. The double gap nature of MgB2 manifests itself in the presence of a wide low-T tail in the R(T) curves, which can be ascribed to the quasiparticles thermally excited through the pi gap even at relatively low temperatures.
机译:我们报告了通过反应性液态镁渗透技术制备的圆柱形MgB2棒的微波(mw)特性。长94.3 mm的MgB2棒用作同轴腔体的内部导体,该腔体以Cu管作为外部导体。通过分析在不同谐振模式和不同温度下腔体的谐振曲线,我们确定了MgB2材料在固定频率下的mw表面电阻Rs的温度依赖性以及在固定频率下的Rs频率依赖性。温度。我们的结果表明,Rs(f)曲线遵循f ^ n律,其中n随着温度的升高而减小,从n = 2开始,在T = 4.2 K处,下降到n = 0.7,在T> Tc处。 MgB2的双间隙性质表现为在R(T)曲线中存在宽的低T尾部,这可归因于即使在相对较低的温度下通过pi间隙热激发的准粒子。

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