Localized diabatization applied to excitons in molecular crystals

Abstract

Traditional ab initio electronic structure calculations of periodic systems yield delocalized eigenstates that should be understood as adiabatic states. For example, excitons are bands of extended states which superimpose localized excitations on every lattice site. However, in general, in order to study the effects of nuclear motion on exciton transport, it is standard to work with a localized description of excitons, especially in a hopping regime; even in a band regime, a localized description can be helpful. To extract localized excitons from a band requires essentially a diabatization procedure. In this paper, three distinct methods are proposed for such localized diabatization: (i) a simple projection method, (ii) a more general Pipek-Mezey localization scheme, and (iii) a variant of Boys diabatization. Approaches (i) and (ii) require localized, single-particle Wannier orbitals, while approach (iii) has no such dependence. These methods should be very useful for studying energy transfer through solids with ab initio calculations.

Document Details

Document Type
Pub Defense Publication
Publication Date
Jun 28, 2017
Source ID
10.1063/1.4986952

Entities

People

  • Joseph E Subotnik
  • Zuxin Jin

Organizations

  • Air Force Office of Scientific Research
  • SLAC National Accelerator Laboratory
  • University of Pennsylvania

Tags

Fields of Study

  • Physics

Readers

  • Computational Modeling and Simulation
  • Quantum Chemistry
  • Quantum spin resonance or Electron Paramagnetic Resonance spectroscopy.

Technology Areas

  • Microelectronics
  • Space