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Pairing fluctuations in the pseudogap state of copper-oxide superconductors probed by the Josephson effect

机译:约瑟夫森效应探测的氧化铜超导体假间隙态的成对涨落

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摘要

The phase diagram of high-temperature superconductors is still to be understood1. In the low-carrier-doping regime, a loss of spectral weight in the electronic excitation spectrum—the so-called pseudogap—is observed above the superconducting temperature Tc, and below a characteristic temperature T* (ref. 2). First observed in the spin channel by NMR measurements, the pseudogap has also been observed in the charge channel by scanning probe microscopy and photoemission experiments, for instance2. An important issue to address is whether this phenomenon is related to superconductivity or to a competing 'hidden' order. In the superconductivity case, it has been suggested that superconducting pairing fluctuations may be responsible, but this view remains to be tested experimentally. Here, we have designed a Josephson-like experiment to probe directly the fluctuating pairs in the normal state. We show that fluctuations survive only in a restricted range of temperature above Tc, well below T*, and therefore cannot explain the opening of the pseudogap at higher temperature.
机译:高温超导体的相图仍有待了解1。在低载流子掺杂状态下,在超导温度Tc之上和特征温度T *以下(参考文献2),观察到电子激发光谱中的光谱权重损失(所谓的伪间隙)。例如,首先通过NMR测量在自旋通道中观察到伪间隙,还通过扫描探针显微镜和光发射实验在电荷通道中观察到了伪间隙。需要解决的一个重要问题是这种现象是与超导性还是与竞争的“隐性”秩序有关。在超导情况下,已经提出超导配对波动可能是造成这种现象的原因,但是这种观点仍有待实验检验。在这里,我们设计了一个类似于约瑟夫森的实验,可以直接探测正常状态下的波动对。我们表明,波动仅在Tc以上,T *以下的有限温度范围内得以生存,因此无法解释在较高温度下伪间隙的打开。

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