The metal-insulator transition in the paramagnetic Hubbard Model

We study the Mott transition in the Hubbard Model within the dynamical mean field theory (DMFT) approach. The DMFT equations are solved using the density matrix renormalization group technique. The densities of states for the half-filled and heavily doped cases are shown. The full phase diagram is a...

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Autor principal: Rozenberg, Marcelo Javier
Publicado: 2008
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09214526_v403_n5-9_p1465_Miranda
http://hdl.handle.net/20.500.12110/paper_09214526_v403_n5-9_p1465_Miranda
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spelling paper:paper_09214526_v403_n5-9_p1465_Miranda2023-06-08T15:50:32Z The metal-insulator transition in the paramagnetic Hubbard Model Rozenberg, Marcelo Javier Density matrix renormalization group Dynamical mean field theory Mott transition Doping (additives) Mean field theory Metal insulator transition Phase diagrams Problem solving Density matrix renormalization groups Dynamical mean field theory (DMFT) Mott transitions Renormalization group techniques Paramagnetic materials We study the Mott transition in the Hubbard Model within the dynamical mean field theory (DMFT) approach. The DMFT equations are solved using the density matrix renormalization group technique. The densities of states for the half-filled and heavily doped cases are shown. The full phase diagram is also presented. © 2007 Elsevier B.V. All rights reserved. Fil:Rozenberg, M.J. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. 2008 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09214526_v403_n5-9_p1465_Miranda http://hdl.handle.net/20.500.12110/paper_09214526_v403_n5-9_p1465_Miranda
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Density matrix renormalization group
Dynamical mean field theory
Mott transition
Doping (additives)
Mean field theory
Metal insulator transition
Phase diagrams
Problem solving
Density matrix renormalization groups
Dynamical mean field theory (DMFT)
Mott transitions
Renormalization group techniques
Paramagnetic materials
spellingShingle Density matrix renormalization group
Dynamical mean field theory
Mott transition
Doping (additives)
Mean field theory
Metal insulator transition
Phase diagrams
Problem solving
Density matrix renormalization groups
Dynamical mean field theory (DMFT)
Mott transitions
Renormalization group techniques
Paramagnetic materials
Rozenberg, Marcelo Javier
The metal-insulator transition in the paramagnetic Hubbard Model
topic_facet Density matrix renormalization group
Dynamical mean field theory
Mott transition
Doping (additives)
Mean field theory
Metal insulator transition
Phase diagrams
Problem solving
Density matrix renormalization groups
Dynamical mean field theory (DMFT)
Mott transitions
Renormalization group techniques
Paramagnetic materials
description We study the Mott transition in the Hubbard Model within the dynamical mean field theory (DMFT) approach. The DMFT equations are solved using the density matrix renormalization group technique. The densities of states for the half-filled and heavily doped cases are shown. The full phase diagram is also presented. © 2007 Elsevier B.V. All rights reserved.
author Rozenberg, Marcelo Javier
author_facet Rozenberg, Marcelo Javier
author_sort Rozenberg, Marcelo Javier
title The metal-insulator transition in the paramagnetic Hubbard Model
title_short The metal-insulator transition in the paramagnetic Hubbard Model
title_full The metal-insulator transition in the paramagnetic Hubbard Model
title_fullStr The metal-insulator transition in the paramagnetic Hubbard Model
title_full_unstemmed The metal-insulator transition in the paramagnetic Hubbard Model
title_sort metal-insulator transition in the paramagnetic hubbard model
publishDate 2008
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_09214526_v403_n5-9_p1465_Miranda
http://hdl.handle.net/20.500.12110/paper_09214526_v403_n5-9_p1465_Miranda
work_keys_str_mv AT rozenbergmarcelojavier themetalinsulatortransitionintheparamagnetichubbardmodel
AT rozenbergmarcelojavier metalinsulatortransitionintheparamagnetichubbardmodel
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