Optical Weights and Waterfalls in Doped Charge Transfer Insulators: an LDA+DMFTStudy of LSCO
arXiv:0804.1512 · doi:10.1103/PhysRevB.78.134519
Abstract
We use the Local Density Approximation in combination with the Dynamical Mean Field Theory to investigate intermediate energy properties of the copper oxides. We identify coherent and incoherent spectral features that results from doping a charge transfer insulator, namely quasiparticles, Zhang-Rice singlet band, and the upper and lower Hubbard bands. Angle resolving these features, we identify a \emphasize{waterfall} like feature, between the quasiparticle part and the incoherent part of the Zhang-Rice band. We investigate the assymetry between particle and hole doping. On the hole doped side, there is a very rapid transfer of spectral weight upon doping in the one particle spectra. The optical spectral weight increases superlinearly on the hole doped side in agreement with experiments.
4 pages
References in corpus (14)
- Wannier90: A Tool for Obtaining Maximally-Localised Wannier Functions
- A continuous-time solver for quantum impurity models
- Quantum Monte Carlo Impurity Solver for Cluster DMFT and Electronic Structure Calculations in Adjustable Base
- Strongly Correlated Superconductivity: a plaquette Dynamical mean field theory study
- High-energy kink in high-temperature superconductors
- Optical conductivity and the correlation strength of high temperature copper-oxide superconductors
- "Waterfalls" phenomenon in superconducting cuprates
- "Waterfalls" in cuprates
- Momentum and excitation energy dependence of the "waterfalls" in cuprates
- High energy kink in the single particle spectra of the two-dimensional Hubbard model
- Calculated Momentum Dependence of Zhang-Rice States in Transition Metal Oxides
- Temperature and doping dependence of high-energy kink in cuprates
- Exact diagonalization study of optical conductivity in two-dimensional Hubbard model
- Metal-Insulator transitions in the periodic Anderson model
Cited by in corpus (46)
- Dynamical Mean-Field Theory within the Full-Potential Methods: Electronic structure of Ce-115 materials
- Strength of Correlations in electron and hole doped cuprates
- Apical oxygens and correlation strength in electron and hole doped copper oxides
- Antiferromagnetism and the gap of a Mott insulator: Results from analytic continuation of the self-energy
- Characterizing the three-orbital Hubbard model with determinant quantum Monte Carlo
- Effect of strong correlations on the high energy anomaly in hole- and electron-doped high-Tc superconductors
- Intermediate Coupling Model of the Cuprates
- Phase Diagram of a Three Orbital Model for the high-T cuprates
- Correlation Strength, Gaps and Particle-Hole Asymmetry in High-Tc Cuprates: a Dynamical Mean Field Study of the Three-Band Copper-Oxide Model
- Importance of d-p Coulomb interaction for high T cuprates and other oxides
- Dynamical screening in La2CuO4
- Multi-band non-equilibrium GW+EDMFT formalism for correlated insulators
- The 3-Band Hubbard-Model versus the 1-Band Model for the high-Tc Cuprates: Pairing Dynamics, Superconductivity and the Ground-State Phase Diagram
- Dynamics of photo-doped charge transfer insulators
- Towards a first-principles determination of effective Coulomb interactions in correlated electron materials: Role of intershell interactions
- Pseudogap and superconductivity in two-dimensional doped charge-transfer insulators
- Differences in the quasiparticle dynamics for one-band and three-band cuprate models
- Role of oxygen-oxygen hopping in the three-band copper-oxide model: quasiparticle weight, metal insulator and magnetic phase boundaries, gap values and optical conductivity
- Emery vs. Hubbard model for cuprate superconductors: a Composite Operator Method study
- Superconductivity in the three-band model of cuprates: Variational wave function study and relation to the single-band case
- Evolution of plasmon excitations across the phase diagram of the cuprate superconductor LaSrCuO
- d_{3z^2-r^2} Orbital in high-Tc cuprates: Excitonic spectrum, metal-insulator phase diagram, optical conductivity and orbital character of doped holes
- Theory of oxygen K-edge x-ray absorption spectra of cuprates
- Mechanism of High-Temperature Superconductivity in Correlated-Electron Systems
- Mott transition in cuprate high-temperature superconductors
- Spectral properties near the Mott transition in the two-dimensional t-J model
- Multiorbital effects in the functional renormalization group: A weak-coupling study of the Emery model
- The high-energy anomaly in ARPES spectra of the cuprates-many body or matrix element effect?
- An Investigation of Particle-Hole Asymmetry in the Cuprates via Electronic Raman Scattering
- Emerging giant resonant exciton induced by Ta-substitution in anatase TiO: a tunable correlation effect
- Optical and dc conductivities of cuprates: Spin-fluctuation scattering in the t-J model
- Persistent coherence of quantum superpositions in an optimally doped cuprate revealed by 2D spectroscopy
- Antiferromagnetism, Superconductivity and Phase Diagram in the Two-Dimensional Hubbard Model -- Off-Diagonal Wave Function Monte Carlo Studies of Hubbard Model III --
- Quantum Critical Point revisited by the Dynamical Mean Field Theory
- Emergence of charge order in a staggered loop-current phase of cuprate high-temperature superconductors
- Spin and charge fluctuations in the two-band Hubbard model
- Interplay between Point-Group Symmetries and the Choice of the Bloch Basis in Multiband Models
- Local correlations necessitate waterfalls as a connection between quasiparticle band and developing Hubbard bands
- Phenomenological Three-Orbital Spin-Fermion Model for Cuprates
- Energy-scale cascade and correspondence between Mott and Kondo lattice physics
- Enhancement of superconductivity due to kinetic-energy effect in the strongly correlated phase of the two-dimensional Hubbard model
- Ambipolar doping of a charge-transfer insulator in the Emery model
- Single-particle spectra and magnetic susceptibility in the Emery model: a dynamical mean-field perspective
- Inhomogeneous Electronic Distribution in High-Tc Cuprates
- Superconductivity and inhomogeneous charge-ordered state in the two-Dimensional Hubbard model -- Off-Diagonal Wave Function Monte Carlo Studies of Hubbard Model IV
- Strong Coupling Diagram Technique for the Three-Band Hubbard Model