English

New optimal control problems in density functional theory motivated by photovoltaics

Optimization and Control 2018-08-14 v1 Analysis of PDEs Chemical Physics

Abstract

We present and study novel optimal control problems motivated by the search for photovoltaic materials with high power-conversion efficiency. The material must perform the first step: convert light (photons) into electronic excitations. We formulate various desirable properties of the excitations as mathematical control goals at the Kohn-Sham-DFT level of theory, with the control being given by the nuclear charge distribution. We prove that nuclear distributions exist which give rise to optimal HOMO-LUMO excitations, and present illustrative numerical simulations for 1D finite nanocrystals. We observe pronounced goal-dependent features such as large electron-hole separation, and a hierarchy of length scales: internal HOMO and LUMO wavelengths << atomic spacings << (irregular) fluctuations of the doping profiles << system size.

Keywords

Cite

@article{arxiv.1808.04200,
  title  = {New optimal control problems in density functional theory motivated by photovoltaics},
  author = {Gero Friesecke and Michael Kniely},
  journal= {arXiv preprint arXiv:1808.04200},
  year   = {2018}
}
R2 v1 2026-06-23T03:32:01.456Z