English

Local operator partitioning of electronic energy for electronic energy transfer: An efficient algorithm

Chemical Physics 2014-01-13 v2 Computational Physics Quantum Physics

Abstract

An efficient computational algorithm to implement a local operator approach to partitioning electronic energy in general molecular systems is presented. This approach, which rigorously defines the electronic energy on any subsystem within a molecule, gives a precise meaning to the subsystem ground and excited electronic energies, which is crucial for investigating electronic energy transfer from first principles. We apply the technique to the 99-((11-naphthyl)-methyl)-anthracene (A1N) molecule by partitioning A1N into anthracenyl and CH2_2-naphthyl groups as subsystems, and examine their electronic energies and populations for several excited states using Configuration Interaction Singles method. The implemented approach shows a wide variety of different behaviors amongst these excited electronic states.

Keywords

Cite

@article{arxiv.1311.7114,
  title  = {Local operator partitioning of electronic energy for electronic energy transfer: An efficient algorithm},
  author = {Jayashree Nagesh and Artur F. Izmaylov and Paul Brumer},
  journal= {arXiv preprint arXiv:1311.7114},
  year   = {2014}
}

Comments

This paper has been withdrawn by the author due to an error in the derivation of equation 24 and 25

R2 v1 2026-06-22T02:16:21.308Z