arXiv · cond-mat/9501030
Energy Gap Structure in Bilayer Oxide Superconductors
Abstract
We consider a model for bilayer superconductors where an interlayer pairing amplitude $Δ_\perp$ co-exists with intralayer pairing $Δ_\|$ of $d_{x^2 - y^2}$ symmetry. This model is motivated by a recent photoemission experiment reporting the splitting of the nodes of the energy gap. In addition to offering a natural explanation of this observation, the model has a number of new experimental consequences. We find that the new state is accompanied by a spontaneous breaking of the tetragonal symmetry. We also find that the out-of-phase oscillation of $Δ_\perp$ and $Δ_\|$ gives rise to a new Raman active mode. The phase of $Δ_\perp$ may also become imaginary, leading to a state which breaks time reversal symmetry, which may have important implications for tunnelling experiments.
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Kazuhiro Kuboki, Patrick A. Lee. 1995-03-15. Energy Gap Structure in Bilayer Oxide Superconductors. https://doi.org/10.1143/jpsj.64.3179
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