On density functional theory models for one-dimensional homogeneous materials

Author:

Bensiali Bouchra1ORCID,Lahbabi Salma23ORCID,Maichine Abdallah4ORCID,Mirinioui Othmane1ORCID

Affiliation:

1. Ecole Centrale Casablanca 1 , Bouskoura, Ville Verte, P.B.27182, Morocco

2. EMAMI, LRI, ENSEM, UHIIC 2 , 7 Route d’El Jadida, B.P.8118 Oasis, Casablanca, Morocco

3. UM6P-College of Computing 3 , Lot 660, Hay Moulay Rachid Ben Guerir 43150, Morocco

4. LAMA, Department of Mathematics, Faculty of Sciences, Mohammed V University in Rabat 4 , 4 Av. Ibn Battouta, 1014 Rabat, Morocco

Abstract

This paper studies Density Functional Theory (DFT) models for homogeneous 1D materials in the 3D space. It follows the previous work [Gontier et al., Commun. Math. Phys. 388, 1475–1505 (2021)] about DFT models for homogeneous 2D materials in 3D. We show how to reduce the problem from a 3D energy functional to a 2D energy functional. The kinetic energy is treated as in the 2D material case by diagonalizing admissible states, and writing the kinetic energy as the infimum of a modified kinetic energy functional on reduced states. Besides, we treat here the Hartree interaction term in 2D, and show how to properly define the mean-field potential, through Riesz potential. We then show the well-posedness of the reduced model and present some numerical illustrations.

Funder

Fondation OCP

Publisher

AIP Publishing

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