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Modeling study of the dip-hump feature in Bi2 Sr2 CaCu2 O8+δ tunneling spectroscopy

机译:Bi2 Sr2 CaCu2 O8 +δ隧穿光谱中的跃峰特征建模研究

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摘要

The tunneling spectra of high-temperature superconductors on Bi2 Sr2 CaCu2 O8+δ (Bi-2212) reproducibly show a high-bias structure in the form of a dip-hump at voltages higher than the gap voltage. Of central concern is whether this feature originates from the normal state background or is intrinsic to the superconducting mechanism. We address this issue by generating a set of model conductance curves-a "normal state" conductance that takes into account effects such as the band structure and a possible pseudogap, and a pure superconducting state conductance. When combined, the result shows that the dip-hump feature present in the experimental conductance curves cannot be naively attributed to a normal state effect. In particular, strong dip features found in superconductor-insulator-superconductor data on optimally doped Bi-2212, including negative dI dV, cannot be a consequence of an extrinsic pseudogap. However, such features can easily arise from state-conserving deviations in the superconducting density of states, e.g., from strong-coupling effects.
机译:Bi2 Sr2 CaCu2 O8 +δ(Bi-2212)上的高温超导体的隧穿光谱可再现地显示出在高于间隙电压的电压下,以尖峰驼峰的形式出现的高偏压结构。中心问题是该特征是源自正常状态背景还是超导机制固有的特征。我们通过生成一组模型电导曲线来解决这个问题-一种“正常状态”电导,其中考虑了诸如能带结构和可能的伪间隙之类的影响,以及纯超导状态电导。当组合在一起时,结果表明存在于实验电导曲线中的骤降特性不能简单地归因于正常状态效应。特别是,在最佳掺杂的Bi-2212的超导体-绝缘体-超导体数据中发现的强倾角特征(包括负dI dV)不能归因于非本征伪间隙。但是,这样的特征很容易由状态的超导密度的状态保持偏差,例如强耦合效应引起。

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