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Anomalous critical fields in quantum critical superconductors

机译:量子临界超导体中的异常临界场

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摘要

Fluctuations around an antiferromagnetic quantum critical point (QCP) are believed to lead to unconventional superconductivity and in some cases to high-temperature superconductivity. However, the exact mechanism by which this occurs remains poorly understood. The iron-pnictide superconductor BaFe2(As1−xPx)2 is perhaps the clearest example to date of a high-temperature quantum critical superconductor, and so it is a particularly suitable system to study how the quantum critical fluctuations affect the superconducting state. Here we show that the proximity of the QCP yields unexpected anomalies in the superconducting critical fields. We find that both the lower and upper critical fields do not follow the behaviour, predicted by conventional theory, resulting from the observed mass enhancement near the QCP. Our results imply that the energy of superconducting vortices is enhanced, possibly due to a microscopic mixing of antiferromagnetism and superconductivity, suggesting that a highly unusual vortex state is realized in quantum critical superconductors.
机译:据认为,反铁磁量子临界点(QCP)附近的波动会导致非常规的超导性,并在某些情况下会导致高温超导性。但是,发生这种情况的确切机制仍然知之甚少。铁酸超导体BaFe2(As1-xPx)2可能是迄今为止高温量子临界超导体最清楚的例子,因此,它是研究量子临界波动如何影响超导状态的特别合适的系统。在这里,我们显示了QCP的邻近性在超导临界场中产生了意外的异常。我们发现,由于在QCP附近观察到的质量增强,下临界区和上临界区均未遵循常规理论所预测的行为。我们的结果表明,超导涡流的能量得到了增强,这可能是由于反铁磁和超导的微观混合所致,这表明在量子临界超导体中实现了非常不寻常的涡旋状态。

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