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Hole pocket–driven superconductivity and its universal features in the electron-doped cuprates

机译:空穴穴驱动的超导电性及其在电子掺杂铜酸盐中的普遍特征

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摘要

After three decades of intensive research attention, the emergence of superconductivity in cuprates remains an unsolved puzzle. One major challenge has been to arrive at a satisfactory understanding of the unusual metallic “normal state” from which the superconducting state emerges upon cooling. A second challenge has been to achieve a unified understanding of hole- and electron-doped compounds. Here, we report detailed magnetoresistance measurements for the archetypal electron-doped cuprate Nd2−xCexCuO4+δ that, in combination with previous data, provide crucial links between the normal and superconducting states and between the electron- and hole-doped parts of the phase diagram. The characteristics of the normal state (magnetoresistance, quantum oscillations, and Hall coefficient) and those of the superconducting state (superfluid density and upper critical field) consistently indicate two-band (electron and hole) features and point to hole pocket–driven superconductivity in these nominally electron-doped materials. We show that the approximate Uemura scaling between the superconducting transition temperature and the superfluid density found for hole-doped cuprates also holds for the small hole component of the superfluid density in electron-doped cuprates.
机译:经过三十年的深入研究,铜盐中超导电性的出现仍然是一个未解之谜。一个主要的挑战是要获得对异常金属“正常状态”的令人满意的理解,冷却后超导状态会从该异常状态中出现。第二个挑战是要获得对空穴和电子掺杂化合物的统一理解。在这里,我们报告了原型电子掺杂的铜酸盐Nd2-xCexCuO4 +δ的详细磁阻测量结果,结合先前的数据,提供了相态图的常态和超导状态以及电子和空穴掺杂部分之间的关​​键链接。正常状态(磁阻,量子振荡和霍尔系数)的特性以及超导状态(超流体密度和上临界场)的特性一致地指示了两个频带(电子和空穴)的特征,并指出了点到孔穴驱动的超导性。这些标称电子掺杂的材料。我们表明,对于掺杂空穴的铜酸盐,发现超导转变温度和超流体密度之间的近似Uemura标度也适用于掺杂电子的铜酸盐中的超流体密度的小空穴组分。

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