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Anomalous coherence peak in the microwave conductivity of c-axis oriented MgB2 thin films

机译:c轴取向MgB2薄膜的微波电导率中异常相干峰

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摘要

The temperature dependence of the real part of the microwave complex conductivity at 17.9 GHz obtained from surface impedance measurements of two c-axis oriented MgB2 thin films reveals a pronounced maximum at a temperature around 0.6 times the critical temperature. Calculations in the frame of a two-band model based on Bardeen-Cooper-Schrieffer (BCS) theory suggest that this maximum corresponds to an anomalous coherence peak resembling the two-gap nature of MgB2. Our model assumes there is no interband impurity scattering and a weak interband pairing interaction, as suggested by band structure calculations. In addition, the observation of a coherence peak indicates that the pi band is in the dirty limit and dominates the total conductivity of our films.
机译:从两个c轴取向的MgB2薄膜的表面阻抗测量获得的17.9 GHz微波复电导率实部的温度依赖性显示出在临界温度0.6倍左右的温度下具有明显的最大值。根据Bardeen-Cooper-Schrieffer(BCS)理论在两波段模型的框架中进行的计算表明,该最大值对应于一个异常相干峰,类似于MgB2的两间隙性质。我们的模型假设不存在带间杂质散射,并且带间配对相互作用弱,这是通过带结构计算得出的。此外,观察到相干峰表明pi带处于脏极限内,并且占了我们薄膜的总电导率。

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