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Probing pairing symmetry in multi-band superconductors by quasiparticle interference

机译:Quasipartics干扰探测多频段超导体的配对对称

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We study momentum and energy dependencies of the quasiparticle interference (QPI) response function in multiband superconductors in the framework of the strong-coupling Eliashberg approach. Within an effective two-band model we study the s± and s++ symmetry cases, corresponding to opposite or equal signs of the order parameters in the bands. We demonstrate that the momentum dependence of the QPI function is strikingly different for s± and s++ symmetries of the order parameter at energies close to the small gap. At the same time, the QPI response becomes indistinguishable for both symmetries at higher energies around the large gap. This result may guide future experiments on probing pairing symmetry in iron pnictides as well as in other unconventional superconductors.
机译:我们在强耦合ELIASHBERG方法框架中研究了多频带超导体中的Quasiparticle干扰(QPI)响应功能的势动力和能量依赖性。在有效的双频模型中,我们研究了S±和S ++对称情况,对应于频带中订单参数的相对或相同的迹象。我们证明QPI函数的动量依赖性对于靠近小间隙的能量的顺序参数的S±和S ++对称的S±和S ++对称的动量依赖性。同时,QPI响应对于在围绕较大差距的较高能量的对称性变得难以区分。该结果可以指导未来在铁毒率中探测配对对称的实验以及其他非传统超导体。

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