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p + ip-wave pairing symmetry at type-Ⅱ van Hove singularities

机译:Ⅱ型van Hove奇点的P + IP波配对对称

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摘要

Based on the random phase approximation calculation in two-orbital honeycomb lattice model, we investigate the pairing symmetry of Ni-based transition-metal trichalcogenides by electron doping access to type-II van Hove singularities (vHs). We find that chiral even-parity d + id-wave (E-g) state is suppressed by odd-parity p + ip-wave (E-u) state when electron doping approaches the type-II vHs. The type-II vHs peak in density of states (DOS) enables to strengthen the ferromagnetic fluctuation, which is responsible for triplet pairing. The competition between antiferromagnetic and ferromagnetic fluctuation results in pairing phase transition from singlet to triplet pairing. The Ni-based transition-metal trichalcogenides provide a promising platform to unconventional superconductor emerging from electronic DOS.
机译:基于双轨道蜂窝晶格模型中的随机相位近似值,我们通过电子掺杂进入对II型van Hove奇异性(VHS)的基于Ni的过渡金属三氯甲酸酯的配对对称性。 当电子掺杂接近II型VHS时,我们发现手表偶数奇偶校验D + ID波(E-G)状态被奇数奇偶校验P + IP波(E-U)状态抑制。 状态 - II型VHS峰值(DOS)的峰值使得能够加强铁磁波动,这负责三重态配对。 反铁磁和铁磁波动之间的竞争导致单次双链配对的配对相转变。 基于Ni的过渡金属三氯甲硅藻剂为来自电子DOS出现的非传统超导体提供了一个有前途的平台。

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