Artículo
Variational reduced density matrix method in the doubly-occupied configuration interaction space using four-particle N-representability conditions: Application to the XXZ model of quantum magnetism
Rubio Garcia, Manuel Alejandro; Dukelsky, J.; Alcoba, Diego Ricardo
; Capuzzi, Pablo
; Oña, Ofelia Beatriz
; Ríos, Elías Daniel
; Torre, Alicia; Lain, Luis
Fecha de publicación:
15/10/2019
Editorial:
American Institute of Physics
Revista:
Journal of Chemical Physics
ISSN:
0021-9606
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
This work deals with the variational determination of the two-particle reduced density matrix (2-RDM) and the energy corresponding to the ground state of N-particle systems within the doubly occupied configuration interaction (DOCI) space. Here, we impose for the first time up to four-particle N-representability constraint conditions in the variational determination of the 2-RDM matrix elements using the standard semidefinite programming algorithms. The energies and 2-RDMs obtained from this treatment and the corresponding computational costs are compared with those arisen from previously reported less restrictive variational methods [D. R. Alcoba et al., J. Chem. Phys. 149, 194105 (2018)] as well as with the exact DOCI values. We apply the different approximations to the one-dimensional XXZ model of quantum magnetism, which has a rich phase diagram with one critical phase and constitutes a stringent test for the method. The numerical results show the usefulness of our treatment to achieve a high degree of accuracy.
Palabras clave:
XXZ model
,
N-Representability Conditions
,
Quantum Magnetism
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Articulos(IFIBA)
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos de INST.DE FISICA DE BUENOS AIRES
Citación
Rubio Garcia, Manuel Alejandro; Dukelsky, J.; Alcoba, Diego Ricardo; Capuzzi, Pablo; Oña, Ofelia Beatriz; et al.; Variational reduced density matrix method in the doubly-occupied configuration interaction space using four-particle N-representability conditions: Application to the XXZ model of quantum magnetism; American Institute of Physics; Journal of Chemical Physics; 151; 15; 15-10-2019; 1-11
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