The charge dynamics in weakly hole doped high temperature superconductors is studied in terms of the accurate numerical solution to a model of a single hole interacting with a quantum lattice in an antiferromagnetic background, and accurate far-infrared ellipsometry measurements. The experimentally observed two electronic bands in the infrared spectrum can be identified in terms of the interplay between the electron correlation and electron-phonon interaction resolving the long standing mystery of the mid-infrared band.
Charge dynamics of doped holes in high Tc superconductors: a clue from one-hole optical conductivity in the t-J Holstein model / A. S., Mishchenko; N., Nagaosa; Z. X., Shen; DE FILIPPIS, Giulio; Cataudella, Vittorio; T. P., Devereaux; C., Bernhard; K. W., Kim; J., Zaanen. - In: PHYSICAL REVIEW LETTERS. - ISSN 0031-9007. - STAMPA. - 100:(2008), pp. 166401-1-166401-4. [10.1103/PhysRevLett.100.166401]
Charge dynamics of doped holes in high Tc superconductors: a clue from one-hole optical conductivity in the t-J Holstein model
DE FILIPPIS, GIULIO;CATAUDELLA, VITTORIO;
2008
Abstract
The charge dynamics in weakly hole doped high temperature superconductors is studied in terms of the accurate numerical solution to a model of a single hole interacting with a quantum lattice in an antiferromagnetic background, and accurate far-infrared ellipsometry measurements. The experimentally observed two electronic bands in the infrared spectrum can be identified in terms of the interplay between the electron correlation and electron-phonon interaction resolving the long standing mystery of the mid-infrared band.File | Dimensione | Formato | |
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