Self Energy and Fluctuation Spectra in Cuprates: Comparing Optical and Photoemission Results
arXiv:1207.6061 · doi:10.1103/PhysRevB.86.024511
Abstract
We compare efforts to extract self energies and fluctuation spectra of the cuprates using optical and photoemission techniques. The fluctuations have contributions from both the coherent and incoherent parts of the band, which are spread over the full bare bandwidth of >2eV. Many experimental studies concentrate on the coherent part of the band and hence miss higher energy fluctuations. Our study establishes the universal presence of high energy bosonic fluctuations across various spectroscopies as a key ingredient in the high temperature superconducting cuprates.
10 pages, 6 figures
References in corpus (31)
- Interplay of electron-lattice interactions and superconductivity in Bi2Sr2CaCu2O8+d
- Strength of the Spin-Fluctuation-Mediated Pairing Interaction in a High-Temperature Superconductor
- A universal high energy anomaly in angle resolved photoemission spectra of high temperature superconductors - possible evidence of spinon and holon branches
- Strength of Correlations in electron and hole doped cuprates
- High-energy kink in high-temperature superconductors
- The hierarchy of multiple many-body interaction scales in high-temperature superconductors
- Anomalous high energy dispersion in photoemission spectra from insulating cuprates
- High-energy scale revival and giant kink in the dispersion of a cuprate superconductor
- Optical determination of the relation between the electron-boson coupling function and the critical temperature in high T cuprates
- Revealing the high-energy electronic excitations underlying the onset of high-temperature superconductivity in cuprates
- Optical conductivity and the correlation strength of high temperature copper-oxide superconductors
- Role of backflow correlations for the non-magnetic phase of the t-t' Hubbard model
- An Isotopic Fingerprint of Electron-Phonon Coupling in High-Tc Cuprates
- High Energy Dispersions in Bi2Sr2CaCu2O8 High Temperature Superconductor from Laser-Based Angle-Resolved Photoemission
- Physics of the Pseudogap in 8-site Cluster Dynamical Mean Field Theory: photoemission, Raman scattering, in-plane and c-axis conductivity
- Combined density-functional and dynamical cluster quantum Monte Carlo calculations for three-band Hubbard models for hole-doped cuprate superconductors
- Correlation Strength, Gaps and Particle-Hole Asymmetry in High-Tc Cuprates: a Dynamical Mean Field Study of the Three-Band Copper-Oxide Model
- Magnetic Excitations and their energy change available to Superconducting Condensation in Optimally Doped YBaCuO
- Competing ferromagnetism in high temperature copper oxide superconductors
- Paramagnon-induced dispersion anomalies in the cuprates
- Momentum Dependence of the Single-Particle Self-Energy and Fluctuation Spectrum of Slightly Underdoped Bi_2 Sr_2 CaCu_2 O_{8+δ} from High Resolution Laser ARPES
- Optical model-solution to the competition between a pseudogap phase and a Mott-gap phase in high-temperature cuprate superconductors
- Saddle-point van Hove singularity and the phase diagram of high-Tc cuprates
- Gutzwiller Magnetic Phase Diagram of the Cuprates
- Emergence of non-Fermi-liquid behavior due to Fermi surface reconstruction in the underdoped cuprate superconductors
- Failure of t-J models in describing doping evolution of spectral weight in x-ray scattering, optical and photoemission spectra of the cuprates
- The electron-boson spectral density function of underdoped BiSrCaCuO and YBaCuO
- Gutzwiller Magnetic Phase Diagram of the Undoped t-t'-U Hubbard Model
- Magnetic mechanism of quasiparticle pairing in hole-doped cuprate superconductors
- Electron Removal Self Energy and its application to Ca2CuO2Cl2
- Crossover from inelastic magnetic scattering of Cooper pairs to spin-wave dispersion produces low-energy kink in cuprates
Cited by in corpus (4)
- Ultrafast optical spectroscopy of strongly correlated materials and high-temperature superconductors: a non-equilibrium approach
- Intermediate Coupling Model of the Cuprates
- Superconducting dome in MoS2 and TiSe2 generated by quasiparticle-phonon coupling
- High energy fluctuation spectra in cuprates from infrared optical spectroscopy