The effect of Holstein electron-phonon interaction on a Hubbard model close to a Mott-Hubbard transition at half filling is investigated by means of dynamical mean-field theory. We observe a reduction of the effective mass that we interpret in terms of a reduced effective repulsion. When the repulsion is rescaled to take into account this effect, the quasiparticle low-energy features are unaffected by the electron-phonon interaction. Phonon features are only observed within the high-energy Hubbard bands. The lack of electron-phonon fingerprints in the quasiparticle physics can be explained interpreting the quasiparticle motion in terms of rare fast processes.
Electron-phonon interaction close to a Mott transition / G., Sangiovanni; M., Capone; Castellani, Claudio; Grilli, Marco. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - 94:2(2005), pp. 026401-1-026401-4. [10.1103/physrevlett.94.026401]
Electron-phonon interaction close to a Mott transition
CASTELLANI, Claudio;GRILLI, Marco
2005
Abstract
The effect of Holstein electron-phonon interaction on a Hubbard model close to a Mott-Hubbard transition at half filling is investigated by means of dynamical mean-field theory. We observe a reduction of the effective mass that we interpret in terms of a reduced effective repulsion. When the repulsion is rescaled to take into account this effect, the quasiparticle low-energy features are unaffected by the electron-phonon interaction. Phonon features are only observed within the high-energy Hubbard bands. The lack of electron-phonon fingerprints in the quasiparticle physics can be explained interpreting the quasiparticle motion in terms of rare fast processes.File | Dimensione | Formato | |
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