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Locating the Missing Superconducting Electrons in the Overdoped Cuprates La_(2-x)Sr_xCuO_4

机译:在过掺杂的铜酸盐LA_(2-X)SR_XCUO_4中定位缺失的超导电子

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摘要

Overdoped high-temperature cuprate superconductors have often been understood within the standard BCS framework of superconductivity. However, measurements in a variety of overdoped cuprates indicate that the superfluid density is much smaller than expected from BCS theory and decreases smoothly to zero as the doping is increased. Here, we combine time-domain THz spectroscopy with kHz range mutual inductance measurements on the same overdoped La2-xSrxCuO4 films to determine the total, superfluid, and uncondensed spectral weight as a function of doping. A significant fraction of the carriers remains uncondensed in a wide Drude-like peak as T - 0, while the superfluid density remains linear in temperature. These observations are seemingly inconsistent with existing, realistic theories of impurity scattering suppressing the superfluid density in a BCS-like d-wave superconductor. Our large measurement frequency range gives us a unique look at the low frequency spectral weight distribution, which may suggest the presence of quantum phase fluctuations as the critical doping is approached.
机译:过掺杂的高温铜酸铜超导体通常在标准BCS的超导框架内理解。然而,各种过掺杂的铜酸盐替代品中的测量表明,超流体密度远小于BCS理论的预期,并且随着掺杂增加,将平稳地降至零。在这里,我们将时域THz光谱与KHz范围互感测量相结合在同一个过掺杂的LA2-XSRXCUO4薄膜上,以确定作为掺杂的函数的总,超氟和且无抗体的光谱重量。载体的显着级分在宽的冰布峰值中保持不变,而Superfluid密度在温度下保持线性。这些观察结果似乎与杂质散射的现有,现实理论抑制了BCS样D波超导体中的超流度密度。我们的大型测量频率范围为我们提供了独特的外观,可以提出随着接近临界掺杂而存在量子相波动的存在。

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    《Physical review letters》 |2019年第2期|027003.1-027003.6|共6页
  • 作者单位

    Johns Hopkins Univ Inst Quantum Matter Dept Phys & Astron Baltimore MD 21218 USA;

    Brookhaven Natl Lab Upton NY 11973 USA|Yale Univ Appl Phys Dept New Haven CT 06520 USA;

    Brookhaven Natl Lab Upton NY 11973 USA|Yale Univ Appl Phys Dept New Haven CT 06520 USA;

    Johns Hopkins Univ Inst Quantum Matter Dept Phys & Astron Baltimore MD 21218 USA;

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