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      Polarons and bipolarons in strongly interacting electron-phonon systems

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          Abstract

          The Holstein Hubbard and Holstein t--J models are studied for a wide range of phonon frequencies, electron--electron and electron--phonon interaction strengths on finite lattices with up to ten sites by means of direct Lanczos diagonalization. Previously the necessary truncation of the phononic Hilbert space caused serious limitations to either very small systems (four or even two sites) or to weak electron--phonon coupling, in particular in the adiabatic regime. Using parallel computers we were able to investigate the transition from `large' to `small' polarons in detail. By resolving the low--lying eigenstates of the Hamiltonian and by calculating the spectral function we can identify a polaron band in the strong--coupling case, whose dispersion deviates from the free--particle dispersion at low and intermediate phonon frequencies. For two electrons (holes) we establish the existence of bipolaronic states and discuss the formation of a bipolaron band. For the 2D Holstein t--J model we demonstrate that the formation of hole--polarons is favoured by strong Coulomb correlations. Analyzing the hole--hole correlation functions we find that hole binding is enhanced as a dynamical effect of the electron--phonon interaction.

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          Most cited references45

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          Charge modulations inLa2−xSrxNiO4+y: Ordering of polarons

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            Adiabatic Theory of an Electron in a Deformable Continuum

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              • Article: not found

              Freezing electronic correlations by polaronic instabilities in dopedLa2NiO4

                Author and article information

                Journal
                21 December 1995
                Article
                10.1103/PhysRevB.53.9666
                cond-mat/9512143
                fd69f876-2082-4bb3-88fd-874453ac0d5a
                History
                Custom metadata
                Phys. Rev. B 53 (1995) 9666
                23 pages (Revtex) with 13 figures (ps, uuencoded)
                cond-mat

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