Artículo
Polynomial scaling approximations and dynamic correlation corrections to doubly occupied configuration interaction wave functions
Van Raemdonck, Mario; Alcoba, Diego Ricardo
; Poelmans, Ward; De Baerdemacker, Stijn; Torre, Alicia; Lain, Luis; Massaccesi, Gustavo Ernesto
; Van Neck, D.; Bultinck, P.
Fecha de publicación:
09/2015
Editorial:
American Institute of Physics
Revista:
Journal of Chemical Physics
ISSN:
0021-9606
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
A class of polynomial scaling methods that approximate Doubly Occupied Configuration Interaction (DOCI) wave functions and improve the description of dynamic correlation is introduced. The accuracy of the resulting wave functions is analysed by comparing energies and studying the overlap between the newly developed methods and full configuration interaction wave functions, showing that a low energy does not necessarily entail a good approximation of the exact wave function. Due to the dependence of DOCI wave functions on the single-particle basis chosen, several orbital optimisation algorithms are introduced. An energy-based algorithm using the simulated annealing method is used as a benchmark. As a computationally more affordable alternative, a seniority number minimising algorithm is developed and compared to the energy based one revealing that the seniority minimising orbital set performs well. Given a well-chosen orbital basis, it is shown that the newly developed DOCI based wave functions are especially suitable for the computationally efficient description of static correlation and to lesser extent dynamic correlation.
Palabras clave:
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Articulos(IFIBA)
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos de INST.DE FISICA DE BUENOS AIRES
Citación
Van Raemdonck, Mario; Alcoba, Diego Ricardo; Poelmans, Ward; De Baerdemacker, Stijn; Torre, Alicia; et al.; Polynomial scaling approximations and dynamic correlation corrections to doubly occupied configuration interaction wave functions; American Institute of Physics; Journal of Chemical Physics; 143; 9-2015; 104106-104106
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