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Admixture of an s-Wave Component to the d-Wave Gap Symmetry in High-Temperature Superconductors

机译:高温超导体中s波成分与d波间隙对称性的混合

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Neutron crystal-field spectroscopy experiments in the Y- and La-type high-temperature superconductors HoBa2Cu3O6.56, HoBa2Cu4O8, and La1.81Sr0.15Ho0.04- CuO4 are reviewed. By this bulk-sensitive technique, information on the gap function is obtained from the relaxation behavior of crystal-field transitions associated with the Ho3+ ions which sit as local probes close to the superconducting copper-oxide planes. The relaxation data exhibit a peculiar change from a convex to a concave shape between the superconducting transition temperature T c and the pseudogap temperature T * which can only be modeled satisfactorily if the gap function of predominantly d-wave symmetry includes an s-wave component of the order of 20–25%, independent of the doping level. Moreover, our results are compatible with an unusual temperature dependence of the gap function in the pseudogap region (T c≤T≤T *), i.e., a break up of the Fermi surface into disconnected arcs.
机译:Y型和La型高温超导体HoBa2 Cu3 O6.56 ,HoBa2 Cu4 O8 的中子晶体场光谱实验>,并审查了La1.81 Sr0.15 Ho0.04 -CuO4 。通过这种体敏技术,可以从与Ho3 +离子相关的晶体场跃迁的弛豫行为中获得有关间隙函数的信息,该Ho3 +离子作为局部探针位于超导氧化铜平面附近。弛豫数据在超导转变温度T c 和伪间隙温度T * 之间呈现出从凸形到凹形的奇特变化,只有在主要是d波的间隙函数的情况下,才能令人满意地模拟该松弛数据。对称性包括20-25%数量级的s波分量,与掺杂水平无关。此外,我们的结果与伪间隙区域中间隙函数的异常温度依赖性(T c ≤T≤T* )兼容,即费米表面破裂成不连续的电弧。

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