Quantitative Determination of Eliashberg Function and Evidence of Strong Electron Coupling with Multiple Phonon Modes in Heavily Over doped (Bi,Pb)2Sr2CuO6
arXiv:1002.0120 · doi:10.1103/PhysRevB.83.184515
Abstract
Super-high resolution laser-based angle-resolved photoemission spectroscopy measurements have been carried out on a heavily overdoped (Bi,Pb)2Sr2CuO6 (Tc> 5 K) superconductor. Taking advantage of the high-precision data on the subtle change of the quasi-particle dispersion at different temperatures, we develop a general procedure to determine the bare band dispersion and extract the bosonic spectral function quantitatively. Our results show unambiguously that the 70 meV nodal kink is due to the electron coupling with the multiple phonon modes, with a large mass enhancement factor Lamda= 0.42 even in the heavily over-doped regime.
4pages,4figures
References in corpus (17)
- Strength of the Spin-Fluctuation-Mediated Pairing Interaction in a High-Temperature Superconductor
- Development of a Vacuum Ultra-Violet Laser-Based Angle-Resolved Photoemission System with a Super-High Energy Resolution Better Than 1 meV
- A universal high energy anomaly in angle resolved photoemission spectra of high temperature superconductors - possible evidence of spinon and holon branches
- High-energy kink in high-temperature superconductors
- The hierarchy of multiple many-body interaction scales in high-temperature superconductors
- Self-consistent self-energy analysis of photoemission data
- Bare electron dispersion from photoemission experiments
- 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
- Disappearance of antiferromagnetic spin excitations in over-doped LaSrCuO
- Doping dependence of the coupling of electrons to bosonic modes in the single-layer high-temperature Bi2Sr2CuO6 superconductor
- "Waterfalls" phenomenon in superconducting cuprates
- "Waterfalls" in cuprates
- Identification of a New Form of Electron Coupling in Bi2Sr2CaCu2O8 Superconductor by Laser-Based Angle-Resolved Photoemission
- Direct extraction of the Eliashberg function for electron-phonon coupling: A case study of Be(1010)
- High Energy Dispersions in Bi2Sr2CaCu2O8 High Temperature Superconductor from Laser-Based Angle-Resolved Photoemission
- Momentum dependence of the electron-phonon coupling and self-energy effects in YBa_2Cu_3O_7 within the local density approximation