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Competing Nodal d-Wave Superconductivity and Antiferromagnetism

机译:竞争节点D波超导和反铁磁性

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摘要

Competing unconventional superconductivity and antiferromagnetism widely exist in several strongly correlated quantum materials whose direct simulation generally suffers from fermion sign problem. Here, we report unbiased quantum Monte Carlo (QMC) simulations on a sign-problem-free repulsive toy model with same on site symmetries as the standard Hubbard model on a 2D square lattice. Using QMC simulations, supplemented with mean-field and continuum field-theory arguments, we find that it hosts three distinct phases: a nodal d-wave phase, an antiferromagnet, and an intervening phase which hosts coexisting antiferromagnetism and nodeless d-wave superconductivity. The transition from the coexisting phase to the antiferromagnet is described by the 2 + 1-D XY universality class, while the one from the coexisting phase to the nodal d-wave phase is described by the Heisenberg-Gross-Neveu theory. The topology of our phase diagram resembles that of layered organic materials which host pressure tuned Mott transition from antiferromagnet to unconventional superconductor at half-filling.
机译:竞争非传统的超导性和反铁磁性广泛存在于几种强相关的量子材料中,其直接模拟通常遭受FERMION标志问题。在这里,我们在与2D方形格子上的标准Hubbard模型中报告与现场对称的无偏的Quantum Monte Carlo(QMC)模拟。使用QMC仿真,补充有平均场和连续性场理论争论,我们发现它占三个不同的阶段:节点D波相,反霉素和托管共存反铁磁体和无点D波超导导电的介入阶段。由2 + 1-D XY普遍性等级描述从共存阶段到反霉菌的转变,而Heisenberg-Gross-Neveu理论描述了来自共存阶段到节点D波相的一个。我们的相图的拓扑类似于层状有机材料的载体从反霉素到非传统超导体在半填充的中载压力调谐的莫特转变。

著录项

  • 来源
    《Physical review letters》 |2021年第21期|217002.1-217002.6|共6页
  • 作者

    Xu Xiao Yan; Grover Tarun;

  • 作者单位

    Univ Calif San Diego Dept Phys La Jolla CA 92093 USA;

    Univ Calif San Diego Dept Phys La Jolla CA 92093 USA;

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  • 正文语种 eng
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