Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Periodic subsystem density-functional theory

View through CrossRef
By partitioning the electron density into subsystem contributions, the Frozen Density Embedding (FDE) formulation of subsystem Density Functional Theory (DFT) has recently emerged as a powerful tool for reducing the computational scaling of Kohn–Sham DFT. To date, however, FDE has been employed to molecular systems only. Periodic systems, such as metals, semiconductors, and other crystalline solids have been outside the applicability of FDE, mostly because of the lack of a periodic FDE implementation. To fill this gap, in this work we aim at extending FDE to treat subsystems of molecular and periodic character. This goal is achieved by a dual approach. On one side, the development of a theoretical framework for periodic subsystem DFT. On the other, the realization of the method into a parallel computer code. We find that periodic FDE is capable of reproducing total electron densities and (to a lesser extent) also interaction energies of molecular systems weakly interacting with metallic surfaces. In the pilot calculations considered, we find that FDE fails in those cases where there is appreciable density overlap between the subsystems. Conversely, we find FDE to be in semiquantitative agreement with Kohn–Sham DFT when the inter-subsystem density overlap is low. We also conclude that to make FDE a suitable method for describing molecular adsorption at surfaces, kinetic energy density functionals that go beyond the GGA level must be employed.
Title: Periodic subsystem density-functional theory
Description:
By partitioning the electron density into subsystem contributions, the Frozen Density Embedding (FDE) formulation of subsystem Density Functional Theory (DFT) has recently emerged as a powerful tool for reducing the computational scaling of Kohn–Sham DFT.
To date, however, FDE has been employed to molecular systems only.
Periodic systems, such as metals, semiconductors, and other crystalline solids have been outside the applicability of FDE, mostly because of the lack of a periodic FDE implementation.
To fill this gap, in this work we aim at extending FDE to treat subsystems of molecular and periodic character.
This goal is achieved by a dual approach.
On one side, the development of a theoretical framework for periodic subsystem DFT.
On the other, the realization of the method into a parallel computer code.
We find that periodic FDE is capable of reproducing total electron densities and (to a lesser extent) also interaction energies of molecular systems weakly interacting with metallic surfaces.
In the pilot calculations considered, we find that FDE fails in those cases where there is appreciable density overlap between the subsystems.
Conversely, we find FDE to be in semiquantitative agreement with Kohn–Sham DFT when the inter-subsystem density overlap is low.
We also conclude that to make FDE a suitable method for describing molecular adsorption at surfaces, kinetic energy density functionals that go beyond the GGA level must be employed.

Related Results

Evaluation of tourism ecological security and its Obstacles in Semi-Arid River Valley Urban: A Case Study of Lanzhou
Evaluation of tourism ecological security and its Obstacles in Semi-Arid River Valley Urban: A Case Study of Lanzhou
Abstract Tourism ecological security is an integral component of sustainable tourism development. In this study, we utilized the DPSIR model to establish an evaluation inde...
Synchronization transition with coexistence of attractors in coupled discontinuous system
Synchronization transition with coexistence of attractors in coupled discontinuous system
The studies of extended dynamics systems are relevant to the understanding of spatiotemporal patterns observed in diverse fields. One of the well-established models for such comple...
Development of Digital Resources for the Digital Library “Scientific Heritage of Russia”
Development of Digital Resources for the Digital Library “Scientific Heritage of Russia”
The paper describes methods of formation and presentation of digital objects of various types (printed publications, archival materials, museum objects, audio and video materials)...
Fundamental Concepts and Methodology for the Analysis of Animal Population Dynamics, with Particular Reference to Univoltine Species
Fundamental Concepts and Methodology for the Analysis of Animal Population Dynamics, with Particular Reference to Univoltine Species
This paper presents some concepts and methodology essential for the analysis of population dynamics of univoltine species. Simple stochastic difference equations, comprised of endo...
The Effects of Periodic Suction on Separated Flow in Diffuser
The Effects of Periodic Suction on Separated Flow in Diffuser
The effects of periodic suction on the separated flow are still unclear and the relevant researches are still scarce, thus this paper presents a periodic suction method to suppress...
DENSITY OF INDIAN BLUE PEAFOWL (PAVO CRISTATUS) IN DIFFERENT MICROHABITATS AT THANJAVUR DISTRICT, TAMIL NADU
DENSITY OF INDIAN BLUE PEAFOWL (PAVO CRISTATUS) IN DIFFERENT MICROHABITATS AT THANJAVUR DISTRICT, TAMIL NADU
A total of 260 observations were taken into account to obtain thedensity of Indian Blue Peafowl (Pavo cristatus) in all the transects in the study area. This average abundance cons...
Structures of the asymmetrical bursting oscillation attractors and their bifurcation mechanisms
Structures of the asymmetrical bursting oscillation attractors and their bifurcation mechanisms
The main purpose of this study is to investigate the characteristics as well as the bifurcation mechanisms of the bursting oscillations in the asymmetrical dynamical system with tw...

Back to Top