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Dielectric properties of ice and liquid water from first-principles calculations
Authors:Lu Deyu  Gygi François  Galli Giulia
Institution:Department of Chemistry, University of California, Davis, Davis, California 95616, USA. dylu@ucdavis.edu
Abstract:We present a first-principles study of the static dielectric properties of ice and liquid water. The eigenmodes of the dielectric matrix E are analyzed in terms of maximally localized dielectric functions similar, in their definition, to maximally localized Wannier orbitals obtained from Bloch eigenstates of the electronic Hamiltonian. We show that the lowest eigenmodes of E (-1) are localized in real space and can be separated into groups related to the screening of lone pairs, intra-, and intermolecular bonds, respectively. The local properties of the dielectric matrix can be conveniently exploited to build approximate dielectric matrices for efficient, yet accurate calculations of quasiparticle energies.
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