Quasiparticle Density of States, Localization, and Distributed Disorder in the Cuprate Superconductors
arXiv:1711.11540 · doi:10.1103/PhysRevB.97.144512
Abstract
We explore the effects of various kinds of random disorder on the quasiparticle density of states of two-dimensional d-wave superconductors using an exact real-space method, incorporating realistic details known about the cuprates. Random on-site energy and pointlike unitary impurity models are found to give rise to a vanishing DOS at the Fermi energy for narrow distributions and low concentrations, respectively, and lead to a finite, but suppressed, DOS at unrealistically large levels of disorder. Smooth disorder arising from impurities located away from the copper-oxide planes meanwhile gives rise to a finite DOS at realistic impurity concentrations. For the case of smooth disorder whose average potential is zero, a resonance is found at zero energy for the quasiparticle DOS at large impurity concentrations. We discuss the implications of these results on the computed low-temperature specific heat, the behavior of which we find is strongly affected by the amount of disorder present in the system. We also compute the localization length as a function of disorder strength for various types of disorder and find that intermediate- and high-energy states are quasi-extended for low disorder, and that states near the Fermi energy are strongly localized and have a localization length that exhibits an unusual dependence on the amount of disorder. We comment on the origin of disorder in the cuprates and provide constraints on these based on known results from scanning tunneling spectroscopy and specific heat experiments.
29 pages, 19 figures, published version, includes minor changes
References in corpus (10)
- How Cooper pairs vanish approaching the Mott insulator in Bi2Sr2CaCu2O8+d
- Laser ARPES, the sudden approximation, and quasiparticle-like peaks in Bi2Sr2CaCu2O8+delta
- Planes, Chains, and Orbits: Quantum Oscillations and High Magnetic Field Heat Capacity in Underdoped YBCO
- Fourier transform spectroscopy of d-wave quasiparticles in the presence of atomic scale pairing disorder
- Interpretation of scanning tunneling quasiparticle interference and impurity states in cuprates
- Stability of nodal quasi-particles in superconductors with coexisting orders
- A momentum-dependent perspective on quasiparticle interference in Bi_{2}Sr_{2}CaCu_{2}O_{8+δ}
- Spin susceptibility of charge ordered YBa2Cu3Oy across the upper critical field
- Revisiting Quasiparticle Scattering Interference in High-Temperature Superconductors: The Problem of Narrow Peaks
- Observation of electronic bound states in charge-ordered YBaCuO
Cited by in corpus (7)
- Criticality Across the Energy Spectrum from Random, Artificial Gravitational Lensing in Two-Dimensional Dirac Superconductors
- Self-Energies and Quasiparticle Scattering Interference
- Disorder and Critical Current Variability in Josephson Junctions
- Signatures of nodeless multiband superconductivity and particle-hole crossover in the vortex cores of FeTeSe
- Effect of radiation-induced defects on the superfluid density and optical conductivity of overdoped LaSrCuO
- Quasiparticle scattering interference in cuprate superconductors
- Correlations Among STM Observables in Disordered Unconventional Superconductors