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Role of electronic nematicity in the interplay between s- and d-wave broken-symmetry states

机译:电子向列性在s波和d波破碎对称状态之间相互作用中的作用

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To understand the role of electronic nematic order in the interplay between s- and d-wave particle-particle or particle-hole condensate states, relations between various s- and d-wave order parameters are studied. We find that the nematic operator transforms two independent six-dimensional vectors. The d-wave superconducting, d-density wave, and antiferromagnetic orders are organized into one vector, and the s-wave superconducting, charge density wave, and spin-triplet d-density wave orders into the other vector. Each vector acts as a superspin and transforms under the action of SO(6) where charge, spin, η- and π-pairing, spin-triplet nematic operators satisfy the SO(6) Lie algebra. Electronic nematic order is not a part of the SO(6) group. It commutes with all 15 generators. Our findings imply that nematic order does not affect the competition among the order parameters within the same superspin, while it strongly interferes the interplay between two order parameters that belong to different superspins. For example, nematicity allows a linear coupling between d- and s-wave superconducting order parameters which modifies the superconducting transition temperature. A generalized Ginzburg-Landau theory and further physical implications are discussed.
机译:为了了解电子向列序在s和d波粒子-粒子或粒子-孔凝结态之间相互作用中的作用,研究了各种s和d波阶参数之间的关系。我们发现向列算子变换了两个独立的六维向量。 d波超导,d密度波和反铁磁阶被组织到一个向量中,而s波超导,电荷密度波和自旋三重态d密度波阶被组织到另一个向量中。每个向量都充当超自旋,并在SO(6)的作用下进行变换,其中电荷,自旋,η-和π对,自旋三重列向列算子满足SO(6)Lie代数。电子向列顺序不属于SO(6)组。它与所有15个发电机通勤。我们的发现暗示,向列序不会影响同一超旋中的序参数之间的竞争,而会强烈干扰属于不同超旋的两个序参数之间的相互作用。例如,向列性允许在d波和s波超导阶数参数之间进行线性耦合,从而修改了超导转变温度。讨论了广义的Ginzburg-Landau理论以及进一步的物理意义。

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