Application to nonlinear optical properties of the RSX‐QIDH double‐hybrid range‐separated functional

Author:

Rodríguez‐Mayorga M.12ORCID,Besalú‐Sala P.3ORCID,Pérez‐Jiménez Á. J.1ORCID,Sancho‐García J. C.1ORCID

Affiliation:

1. Department of Physical Chemistry University of Alicante Alicante Spain

2. Université Grenoble Alpes, CNRS, Inst. NÉEL Grenoble France

3. Department of Chemistry and Pharmaceutical Sciences Amsterdam Institute for Molecular and Life Sciences (AIMMS), Vrije Universiteit Amsterdam Amsterdam The Netherlands

Abstract

AbstractThe effective calculation of static nonlinear optical properties requires a considerably high accuracy at a reasonable computational cost, to tackle challenging organic and inorganic systems acting as precursors and/or active layers of materials in (nano‐)devices. That trade‐off implies to obtain very accurate electronic energies in the presence of externally applied electric fields to consequently obtain static polarizabilities () and hyper‐polarizabilities ( and ). Density functional theory is known to provide an excellent compromise between accuracy and computational cost, which is however largely impeded for these properties without introducing range‐separation techniques. We thus explore here the ability of a modern (double‐hybrid and range‐separated) Range‐Separated eXchange Quadratic Integrand Double‐Hybrid exchange‐correlation functional to compete in accuracy with more costly and/or tuned methods, thanks to its robust and parameter‐free nature.

Funder

Ministerio de Ciencia e Innovación

Vrije Universiteit Amsterdam

Publisher

Wiley

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