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Field-induced quantum critical route to a Fermi liquid in high-temperature superconductors

机译:高温超导体中费米液体的场致量子临界路径

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摘要

In high-transition-temperature (Tc) superconductivity, charge doping is a natural tuning parameter that takes copper oxides from the antiferromagnet to the superconducting region. In the metallic state above Tc, the standard Landau's Fermi-liquid theory of metals as typified by the temperature squared (T2) dependence of resistivity appears to break down. Whether the origin of the non-Fermi-liquid behavior is related to physics specific to the cuprates is a fundamental question still under debate. We uncover a transformation from the non-Fermi-liquid state to a standard Fermi-liquid state driven not by doping but by magnetic field in the overdoped high-Tc superconductor Tl2Ba2CuO6+x. From the c-axis resistivity measured up to 45 T, we show that the Fermi-liquid features appear above a sufficiently high field that decreases linearly with temperature and lands at a quantum critical point near the superconductivity's upper critical field—with the Fermi-liquid coefficient of the T2 dependence showing a power-law diverging behavior on the approach to the critical point. This field-induced quantum criticality bears a striking resemblance to that in quasi-two-dimensional heavy-Fermion superconductors, suggesting a common underlying spin-related physics in these superconductors with strong electron correlations.
机译:在高转变温度(Tc)中,电荷掺杂是一种自然的调节参数,它将氧化铜从反铁磁体带到超导区域。在高于Tc的金属状态下,以电阻率的温度平方(T 2 )依赖性为代表的标准Landau费米-液体金属理论似乎破裂了。非费米液体行为的起源是否与特定于铜酸盐的物理学有关,这是一个尚在争论的基本问题。我们发现了从非费米液体状态到标准费米液体状态的转变,该转变不是由掺杂而是由掺杂的高Tc超导体Tl2Ba2CuO6 + x中的磁场驱动。从测量到45 T的c轴电阻率,我们发现费米液体特征出现在足够高的场上方,该场随温度线性降低,并降落在超导电性上限临界场附近的量子临界点上-费米液体T 2 依赖性的系数显示了在接近临界点时的幂律发散行为。这种场诱导的量子临界与准二维重铁磁超导体具有惊人的相似性,这表明这些超导体中具有强电子相关性的共同的自旋相关物理学。

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