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Doping and energy dependent microwave conductivity of kinetic energy driven superconductors with extended impurities (2008)

Abstract
Within the framework of the kinetic energy driven superconducting mechanism, the effect of the extended impurity scatterers on the quasiparticle transport of cuprate superconductors in the superconducting state is studied based on the nodal approximation of the quasiparticle excitations and scattering processes. It is shown that there is a cusplike shape of the energy dependent microwave conductivity spectrum. At low temperatures, the microwave conductivity increases linearly with increasing temperatures, and reaches a maximum at intermediate temperature, then decreases with increasing temperatures at high temperatures. In contrast with the dome shape of the doping dependent superconducting gap parameter, the minimum microwave conductivity occurs around the optimal doping, and then increases in both underdoped and overdoped regimes.. Comment: 9 pages, 3 figures

Publication details
Download http://arxiv.org/abs/0802.1760
Repository arXiv (United States)
Keywords Condensed Matter - Superconductivity, Condensed Matter - Strongly Correlated Electrons
Type text