Real-space grids and the Octopus code as tools for the development of new simulation approaches for electronic systems

Andrade, Xavier; Strubbe, David; De Giovannini, Umberto; Hjorth Larsen, Ask; Oliveira, Micael J. T.; Alberdi-Rodriguez, Joseba; Varas, Alejandro; Theophilou, Iris; Helbig, Nicole; Verstraete, Matthieu J.; Stella, Lorenzo; Nogueira, Fernando; Aspuru-Guzik, Alan; Castro, Alberto; Marques, Miguel A. L.; et. al.

Abstract

Real-space grids are a powerful alternative for the simulation of electronic systems. One of the main advantages of the approach is the flexibility and simplicity of working directly in real space where the different fields are discretized on a grid, combined with competitive numerical performance and great potential for parallelization. These properties constitute a great advantage at the time of implementing and testing new physical models. Based on our experience with the Octopus code, in this article we discuss how the real-space approach has allowed for the recent development of new ideas for the simulation of electronic systems. Among these applications are approaches to calculate response properties, modeling of photoemission, optimal control of quantum systems, simulation of plasmonic systems, and the exact solution of the Schrodinger equation for low-dimensionality systems.

Más información

Título según WOS: ID WOS:000365410100003 Not found in local WOS DB
Título de la Revista: PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volumen: 17
Número: 47
Editorial: ROYAL SOC CHEMISTRY
Fecha de publicación: 2015
Página de inicio: 31371
Página final: 31396
DOI:

10.1039/c5cp00351b

Notas: ISI