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Real-time time-dependent density functional theory implementation of electronic circular dichroism applied to nanoscale metal–organic clusters

Authors :
Makkonen, Esko
Rossi, Tuomas P.
Larsen, Ask Hjorth
Lopez-Acevedo, Olga
Rinke, Patrick
Kuisma, Mikael
Chen, Xi
Department of Applied Physics
Computational Electronic Structure Theory
Simune Atomistics S.L.
Universidad de Antioquia
University of Jyväskylä
Aalto-yliopisto
Aalto University
Publication Year :
2021
Publisher :
AIP Publishing, 2021.

Abstract

openaire: EC/H2020/838996/EU//RealNanoPlasmon Electronic circular dichroism (ECD) is a powerful spectroscopy method for investigating chiral properties at the molecular level. ECD calculations with the commonly used linear-response time-dependent density functional theory (LR-TDDFT) framework can be prohibitively costly for large systems. To alleviate this problem, we present here an ECD implementation within the projector augmented-wave method in a real-time-propagation TDDFT framework in the open-source GPAW code. Our implementation supports both local atomic basis sets and real-space finite-difference representations of wave functions. We benchmark our implementation against an existing LR-TDDFT implementation in GPAW for small chiral molecules. We then demonstrate the efficiency of our local atomic basis set implementation for a large hybrid nanocluster and discuss the chiroptical properties of the cluster.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....9bc782b01612238e4998c6a99cf3724b