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Superconducting properties of under- and over-doped BaxK1-xBiO3 perovskite oxide

机译:下掺杂Baxk1-XbiO3钙钛矿氧化物的超导性能

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In this study, we investigate the thermodynamic properties of the BaxK1-xBiO3 (BKBO) superconductor in the under- (x = 0.5) and over-doped (x = 0.7) regime, within the framework of the Migdal Eliashberg formalism. The analysis is conducted to verify that the electron phonon pairing mechanism is responsible for the induction of the superconducting phase in the mentioned compound. In particular, we show that BKBO is characterized by the relatively high critical value of the Coulomb pseudopotential, which changes with doping level and does not follow the Morel Anderson model. In what follows, the corresponding superconducting band gap size and related dimensionless ratio are estimated to increase with the doping, in agreement with the experimental predictions. Moreover, the effective mass of electrons is found to take on high values in the entire doping and temperature region. Finally, the characteristic dimensionless ratios for the superconducting band gap, the critical magnetic field and the specific heat for the superconducting state are predicted to exceed the limits set within the Bardeen Cooper Schrieffer theory, suggesting pivotal role of the strong-coupling and retardation effects in the analyzed compound. Presented results supplement our previous investigations and account for the strong-coupling phonon-mediated character of the superconducting phase in BKBO at any doping level.
机译:在该研究中,我们研究了在MIGDAL ELIASHBERG形式主义的框架内(x = 0.5)和过掺杂(x = 0.7)方案中的BAXK1-XBIO3(BKBO)超导体的热力学性质。进行分析以验证电子声音配对机构负责诱导上述化合物中的超导相。特别是,我们表明BKBO的特征在于库仑伪能量的相对高的临界值,这与掺杂水平变化并且不遵循莫雷尔安德森模型。在下文中,估计相应的超导带隙尺寸和相关的无量纲比率与掺杂有关实验预测,估计与掺杂增加。此外,发现有效的电子质量在整个掺杂和温度区域中接受高值。最后,预测超导带隙的特征无量纲比,临界磁场和超导状态的特定热量超过Bardeen Cooper Schrieffer理论内设定的限制,表明强耦合和延迟效应的关键作用分析的化合物。呈现结果补充我们之前的研究,并考虑了任何掺杂水平的BKBO中超导相的强偶联的声子宫介导的特征。

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