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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Anomalous re-entrant superconductivity in Sr0.4K0.6BiO3: Recovery of superconductivity with electric and magnetic field
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Anomalous re-entrant superconductivity in Sr0.4K0.6BiO3: Recovery of superconductivity with electric and magnetic field

机译:Sr0.4K0.6BiO3中异常重入超导性:用电场和磁场恢复超导性

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摘要

Anomalous re-entrant superconducting-normal resistive transition was observed in Sr0.4K0.6BiO3 superconductor i.e., normal - supernormal behavior as temperature is increased. Contrary to previously reported re-entrant resistive behaviors in other compounds, the re-entrant resistivity appearing at zero magnetic field in Sr0.4K0.6BiO3 is suppressed to zero by applying an external magnetic field (H) or increasing the electrical transport current (I): an observation of a zero resistive superconducting state induced by H or I. Comparisons of the normal-state resistivity data in different samples indicate an important role that disorder in the junction barriers between superconducting grains might play on the observed re-entrant resistivity behavior. Possible physical origins of this anomalous phenomenon are discussed. [References: 10]
机译:在Sr0.4K0.6BiO3超导体中观察到异常的折返超导-正常电阻转变,即随着温度升高,正常-超常行为。与先前报道的其他化合物的折返电阻行为相反,通过施加外部磁场(H)或增加电传输电流(I,Sr0.4K0.6BiO3中零磁场出现的折返电阻率被抑制为零。 ):观察到由H或I引起的零电阻超导状态。不同样品中的常态电阻率数据的比较表明,超导晶粒之间的结垒中的无序可能对观察到的重入电阻率行为起重要作用。讨论了这种异常现象的可能物理起源。 [参考:10]

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