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Fermi-surface reconstruction by stripe order in cuprate superconductors

机译:铜酸盐超导体中条带化的费米表面重构

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摘要

The origin of pairing in a superconductor resides in the underlying normal state. In the cuprate high-temperature superconductor YBa2Cu3Oy (YBCO), application of a magnetic field to suppress superconductivity reveals a ground state that appears to break the translational symmetry of the lattice, pointing to some density-wave order. Here we use a comparative study of thermoelectric transport in the cuprates YBCO and La1.8−xEu0.2SrxCuO4 (Eu-LSCO) to show that the two materials exhibit the same process of Fermi-surface reconstruction as a function of temperature and doping. The fact that in Eu-LSCO this reconstruction coexists with spin and charge modulations that break translational symmetry shows that stripe order is the generic non-superconducting ground state of hole-doped cuprates.
机译:超导体中的配对起点位于基本正常状态。在铜酸盐高温超导体YBa2Cu3Oy(YBCO)中,施加磁场以抑制超导性揭示了基态,该基态似乎破坏了晶格的平移对称性,并指向某些密度波阶。在这里,我们对铜酸盐YBCO和La1.8-xEu0.2SrxCuO4(Eu-LSCO)中的热电传输进行了比较研究,结果表明这两种材料表现出相同的费米表面重构过程,这是温度和掺杂的函数。在Eu-LSCO中,这种重建与破坏平移对称性的自旋和电荷调制共存这一事实表明,条纹顺序是空穴掺杂的铜酸盐的一般非超导基态。

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