Fate of disorder-induced inhomogeneities in strongly correlated d-wave superconductors
arXiv:1311.5351 · doi:10.1088/1367-2630/16/10/103018
Abstract
We analyze the complex interplay of the strong correlations and impurities in a high temperature superconductor and show that both the nature and degree of the inhomogeneities at zero temperature in the local order parameters change drastically from what are obtained in a simple Hartree-Fock-Bogoliubov theory. While both the strong electronic repulsions and disorder contribute to the nanoscale inhomogeneity in the population of charge-carriers, we find them to compete with each other leading to a relatively smooth variation of the local density. Our self-consistent calculations modify the spatial fluctuations in the pairing amplitude by suppressing all the double-occupancy within a Gutzwiller formalism and prohibit the formation of distinct superconducting-`islands'. In contrast, presence of such `islands' controls the outcome if strong correlations are neglected. The reorganization of the spatial structures in the Gutzwiller method makes these superconductors surprisingly insensitive to the impurities. This is illustrated by a very weak decay of superfluid stiffness, off-diagonal long range order and local density of states up to a large disorder strength. Exploring the origin of such a robustness we conclude that the underlying one-particle normal states reshape in a rich manner, such that the superconductor formed by pairing these states experiences a weaker but spatially correlated effective disorder. Such a route to superconductivity is evocative of Anderson's theorem. Our results capture the key experimental trends in the cuprates.
Text re-written with results unchanged. To appear in New Journal of Physics
References in corpus (12)
- Electronic Origin of the Inhomogeneous Pairing Interaction in the High-Tc Superconductor Bi2Sr2CaCu2O8+d
- Inhomogeneity Induces Resonance Coherence Peaks in Superconducting BSCCO
- Competition between spin density wave order and superconductivity in the underdoped cuprates
- Fourier transform spectroscopy of d-wave quasiparticles in the presence of atomic scale pairing disorder
- Disorder-Induced Static Antiferromagnetism in Cuprate Superconductors
- Multiscale distribution of oxygen puddles in 1/8 doped YBa2Cu3O6.67
- Grand canonical Gutzwiller approximation for magnetic inhomogeneous systems
- Breakdown of universal transport in correlated d-wave superconductors
- Extended Gutzwiller Approximation for Inhomogeneous System
- Antiferromagnetism and charged vortices in high-Tc superconductors
- Modulation of the local density of states within the -density wave theory in the underdoped cuprates
- Impurity Scattering Effects in STM Studies of High-T_c Superconductors
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