Enhancement of the critical temperature in cuprate superconductors by inhomogeneous doping
arXiv:1105.4243 · doi:10.1103/PhysRevB.84.094508
Abstract
We use a renormalized mean field theory to investigate the superconducting properties of underdoped cuprates embedded with overdoped or metallic regions that carry excess dopants. The overdoped regions are considered, within two different models, first as stripes of mesoscopic size larger than the coherence length and then as point impurities. In the former case we compute the temperature dependent superfluid stiffness by solving Bogoliubov de Gennes equations within the slave boson mean field theory. We average over stripes of different orientations to obtain an isotropic result. To compute the superfluid stiffness in the model with point impurities we resort to a diagrammatic expansion in the impurity concentration (to first order) and their strength (up to second order). We find analytic expressions for the disorder averaged superfluid stiffness and the critical temperature. For both types of inhomogeneity we find increased superfluid stiffness, and for a wide range of doping enhancement of Tc relative to a homogeneously underdoped system. Remarkably, in the case of microscopic impurities we find that the maximal Tc can be significantly increased compared to Tc at optimal doping of a pure system.
16 pages, 6 figures
References in corpus (13)
- An Intrinsic Bond-Centered Electronic Glass with Unidirectional Domains in Underdoped Cuprates
- High-temperature interface superconductivity between metallic and insulating cuprates
- Visualizing pair formation on the atomic scale in the high-Tc superconductor Bi2Sr2CaCu2O8+d
- Electronic Origin of the Inhomogeneous Pairing Interaction in the High-Tc Superconductor Bi2Sr2CaCu2O8+d
- A route to high temperature superconductivity in composite systems
- Enhancement of the superconducting transition temperature in La2-xSrxCuO4 bilayers: Role of pairing and phase stiffness
- Enhanced Superconductivity in Superlattices of High- Cuprates
- Nanoscale Proximity Effect in the High Temperature Superconductor Bi-2212
- Enhanced Pairing in the "Checkerboard" Hubbard Ladder
- Enhancement of the superconducting transition temperature in cuprate heterostructures
- A contractor-renormalization study of Hubbard plaquette clusters
- Anomalous Enhancement of the Superconducting Transition Temperature in Electron-Doped Cuprate Heterostructures
- Microscopic Inhomogeneity and Superconducting Properties of a Two-dimensional Hubbard Model for High- Cuprate
Cited by in corpus (5)
- Enhancing Superconductivity by Disorder
- A dynamical mean-field theory study of stripe order and d-wave superconductivity in the two-dimensional Hubbard model
- Nanoscale interplay of strain and doping in a high-temperature superconductor
- Superfluid stiffness renormalization and critical temperature enhancement in a composite superconductor
- Electronic reconstruction and enhanced superconductivity at LaNdSrCuO/LaSrCuO bilayer interface