Doping dependence of the coupling of electrons to bosonic modes in the single-layer high-temperature Bi2Sr2CuO6 superconductor
arXiv:cond-mat/0602508 · doi:10.1103/PhysRevLett.96.157003
Abstract
A recent highlight in the study of high-Tc superconductors is the observation of band renormalization / self-energy effects on the quasiparticles. This is seen in the form of kinks in the quasiparticle dispersions as measured by photoemission and interpreted as signatures of collective bosonic modes coupling to the electrons. Here we compare for the first time the self-energies in an optimally doped and strongly overdoped, non-superconducting single-layer Bi-cuprate (Bi2Sr2CuO6). Besides the appearance of a strong overall weakening, we also find that weight of the self-energy in the overdoped system shifts to higher energies. We present evidence that this is related to a change in the coupling to c-axis phonons due to the rapid change of the c-axis screening in this doping range.
4 pages, 3 figures
References in corpus (1)
Cited by in corpus (32)
- Electrodynamics of Correlated Electron Materials
- Electronic structure of quantum materials studied by angle-resolved photoemission spectroscopy
- Charge density wave origin of cuprate checkerboard visualized by scanning tunneling microscopy
- A Systematic Study of Electron-Phonon Coupling to Oxygen Modes Across the Cuprates
- The hierarchy of multiple many-body interaction scales in high-temperature superconductors
- Optical determination of the relation between the electron-boson coupling function and the critical temperature in high T cuprates
- Interplay between electron-phonon and Coulomb interactions in cuprates
- An Isotopic Fingerprint of Electron-Phonon Coupling in High-Tc Cuprates
- Direct Role of Structural Dynamics in Electron-Lattice Coupling of Superconducting Cuprates
- Superconductivity in a Hubbard-Froehlich Model and in cuprates
- Unmasking the Origin of Kinks in the Photoemission Spectra of Cuprate Superconductors
- Mode-selective coupling of coherent phonons to the Bi2212 electronic band structure
- The impact of dynamical screening on the phonon dynamics of LaCuO
- Superconductivity-Induced Self-Energy Evolution of the Nodal Electron of Optimally-Doped Bi2212
- Role of Inelastic Tunneling through the Barrier in Scanning Tunneling Microscope Experiments on Cuprates
- Calculation of overdamped c-axis charge dynamics and the coupling to polar phonons in cuprate superconductors
- Superlight small bipolarons
- Aspects of Electron-Phonon Self-Energy Revealed from Angle-Resolved Photoemission Spectroscopy
- Doping dependent optical properties of Bi2201
- Characteristics of oxygen isotope substitutions in the quasiparticle spectrum of BiSrCaCuO
- Density of States Modulations from Oxygen Phonons in d-wave Superconductors: Reconciling Angle-Resolved Photoemission Spectroscopy and Scanning Tunneling Microscopy
- Optical conductivity in the t-J-Holstein Model
- Insights from ARPES for an undoped, four-layered, two-gap high-T_c superconductor
- Quantitative Determination of Eliashberg Function and Evidence of Strong Electron Coupling with Multiple Phonon Modes in Heavily Over doped (Bi,Pb)2Sr2CuO6
- Kuramoto synchronization of quantum tunneling polarons for describing the dynamic structure in cuprate superconductors
- Excitation of a bosonic mode by electron tunneling into a cuprate superconductor
- Extracting correlation effects from Momentum-Resolved Electron Energy Loss Spectroscopy (M-EELS): Synergistic origin of the dispersion kink in BiSrCaCuO
- Electron Removal Self Energy and its application to Ca2CuO2Cl2
- High temperature superconductivity from realistic long-range Coulomb and Fröhlich interactions
- The significance of "stripes" in the physics of the cuprates, the Hubbard model, and other highly correlated electronic systems
- Optics clues to pairing glues in high T cuprates
- Antinodal kink in the band dispersion of electron-doped cuprate