4.7 Article

Unitary Optimization of Localized Molecular Orbitals

Journal

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
Volume 9, Issue 12, Pages 5365-5372

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ct400793q

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Funding

  1. Academy of Finland through its Centers of Excellence [251748]
  2. FiDiPro program [263294]

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A unified formalism and its implementation is presented for Foster-Boys, fourth moment, Pipek-Mezey, and Edmiston-Ruedenberg type localization schemes of molecular orbitals through unitary optimization of the localizing transform matrix using a recently proposed algorithm [Abrudan; et al. Signal Processing 2009, 89, 1704]. A conjugate gradient algorithm is used with an efficient line search method. The option of using complex valued orbitals is included. Applications to fullerenes from C-20 to C-100, as well as benzene and arachic acid are presented, showing the capability of the method, which has been implemented in ERKALE, an open source program for electronic structure calculations of atoms and molecules.

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