arXiv · cond-mat/0102281
Stripes, Vibrations and Superconductivity
Abstract
We propose a model of a spatially modulated collective charge state of superconducting cuprates. The regions of higher carrier density (stripes) are described in terms of Luttinger liquids and the regions of lower density as a two-dimensional interacting bosonic gas of d_{x^2-y^2} hole pairs. The interactions among the elementary excitations are repulsive and the transition to the superconducting state is driven by decay processes. Vibrations of the CCS and the lattice, although not participating directly in the binding mechanism, are fundamental for superconductivity. The superfluid density and the lattice have a strong tendency to modulation implying a still unobserved dimerized stripe phase in cuprates. The phase diagram of the model has a crossover from 1D to 2D behavior and a pseudogap region where the amplitude of the order parameters are finite but phase coherence is not established. We discuss the nature of the spin fluctuations and the unusual isotope effect within the model.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Antonio H. Castro Neto. 2001-03-20. Stripes, Vibrations and Superconductivity. https://doi.org/10.1103/physrevb.64.104509
Cite the original work for its findings. Save a collection to share your selection of sources.