Electron spectra close to a metal-to-insulator transition
arXiv:cond-mat/0507132 · doi:10.1103/PhysRevB.72.113110
Abstract
A high-resolution investigation of the electron spectra close to the metal-to-insulator transition in dynamic mean-field theory is presented. An all-numerical, consistent confirmation of a smooth transition at zero temperature is provided. In particular, the separation of energy scales is verified. Unexpectedly, sharp peaks at the inner Hubbard band edges occur in the metallic regime. They are signatures of the important interaction between single-particle excitations and collective modes.
RevTeX 4, 4 pages, 4 eps figures; published version
References in corpus (7)
- Self-energy-functional approach: Analytical results and the Mott-Hubbard transition
- Density-matrix renormalisation group approach to quantum impurity problems
- Systematic Mapping of the Hubbard Model to the Generalized t-J Model
- High Energy Dynamics of the Single Impurity Anderson Model
- Spectral Densities from Dynamic Density-Matrix Renormalization
- The Mott insulator - 10th order perturbation theory extended to infinite order using QMC
- Ground state of the frustrated Hubbard model within DMFT: energetics of Mott insulator and metal from ePT and QMC
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