Volver a resultados
Ficha bibliográfica · Consulta y acceso
Artículo

Dynamical mean-field theory of strongly correlated fermion systems and the limit of infinite dimensions

Antoine Georges; Gabriel Kotliar; Werner Krauth; M. J. Rozenberg · Reviews of Modern Physics · 1996

Página del recurso
Lectura rápida. Revisá los datos básicos del recurso y luego accedé al contenido desde el botón principal. En esta ficha solo se muestra la información necesaria para identificar la obra, citarla y abrirla.

Acceso al recurso

Entrá al contenido desde la opción principal o elegí otra fuente disponible.

OpenAlex OpenAlex Works
Entrar por OpenAlex
Acceso principal

Página del recurso

Página de referencia del recurso. El texto completo no está confirmado automáticamente.
Abrir recurso

Resumen

Descripción general del contenido del recurso.

We review the dynamical mean-field theory of strongly correlated electron systems which is based on a mapping of lattice models onto quantum impurity models subject to a self-consistency condition. This mapping is exact for models of correlated electrons in the limit of large lattice coordination (or infinite spatial dimensions). It extends the standard mean-field construction from classical statistical mechanics to quantum problems. We discuss the physical ideas underlying this theory and its mathematical derivation. Various analytic and numerical techniques that have been developed recently in order to analyze and solve the dynamical mean-field equations are reviewed and compared to each other. The method can be used for the determination of phase diagrams (by comparing the stability of various types of long-range order), and the calculation of thermodynamic properties, one-particle Green's functions, and response functions. We review in detail the recent progress in understanding the Hubbard model and the Mott metal-insulator transition within this approach, including some comparison to experiments on three-dimensional transition-metal oxides. We present an overview of the rapidly developing field of applications of this method to other systems. The present limitations of the approach, and possible extensions of the formalism are finally discussed. Computer programs for the numerical implementation of this method are also provided with this article.

Cómo citar

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

Georges, A, Kotliar, G, Krauth, W, & Rozenberg, M. J. (1996). Dynamical mean-field theory of strongly correlated fermion systems and the limit of infinite dimensions. https://doi.org/10.1103/revmodphys.68.13

MLA

Georges, Antoine, et al. "Dynamical mean-field theory of strongly correlated fermion systems and the limit of infinite dimensions." 1996. https://doi.org/10.1103/revmodphys.68.13.

Chicago

Georges, Antoine, Gabriel Kotliar, Werner Krauth, and M. J. Rozenberg. 1996. "Dynamical mean-field theory of strongly correlated fermion systems and the limit of infinite dimensions.". https://doi.org/10.1103/revmodphys.68.13.

Harvard

Georges, A. et al. 1996, Dynamical mean-field theory of strongly correlated fermion systems and the limit of infinite dimensions, Reviews of Modern Physics, available at: https://doi.org/10.1103/revmodphys.68.13 [Accessed 6 Aug. 2026].

Compartir e imprimir

Guardá la ficha, copiá su enlace permanente o imprimila como PDF.

Exportar referencia

Si usás un gestor bibliográfico, podés exportar el registro en los formatos más comunes.

Detalles del recurso

Información bibliográfica útil para confirmar que se trata del material correcto.

Título
Dynamical mean-field theory of strongly correlated fermion systems and the limit of infinite dimensions
Autor / colaboradores
Antoine Georges; Gabriel Kotliar; Werner Krauth; M. J. Rozenberg
Editorial
Reviews of Modern Physics
Año de publicación
1996
Idioma
Inglés

Materias

Explorá otros recursos relacionados a partir de estas materias.

Copiado