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Systematic improvement of approximations with smooth models of the Coulomb potential

dc.contributor.advisorAyers, Paul W.
dc.contributor.advisorSavin, Andreas
dc.contributor.authorGonzalez Espinoza, Cristina Elizabeth
dc.contributor.departmentChemistry and Chemical Biologyen_US
dc.date.accessioned2019-03-22T12:43:20Z
dc.date.available2019-03-22T12:43:20Z
dc.date.issued2018
dc.description.abstractOrbital-based methods for electronic-structure calculations are limited to atoms or molecules with up to about 50 electrons. This limitation comes from the requirement of a long expansion in basis functions to approximate correctly the wave function. Replacing the Coulomb interaction with a smooth model potential has two main consequences: first, the wave function becomes cuspless and the expansion in basis functions converges more rapidly, and second, the smooth potential describes a weaker interaction at the electronic coalescence point, which leads to the loss of accuracy. This work explores whether one can construct models with smooth, non-singular, potentials, but without compromising accuracy. The key idea is to use extrapolation procedures to predict the energy for the Coulomb interaction from a sequence of (cheaper) calculations for smooth potentials. By replacing the Coulomb electron-electron interaction with a smooth potential, using the semi-stochastic heat-bath configuration interaction method (SHCI) to select key configurations, and extrapolating to the limiting (non-smoothed) Coulomb potential, we were able to retain the accuracy of full configuration interaction (FCI) calculations, at reduced computational cost.en_US
dc.description.degreeDoctor of Philosophy (PhD)en_US
dc.description.degreetypeThesisen_US
dc.identifier.urihttp://hdl.handle.net/11375/24133
dc.language.isoenen_US
dc.subjectModel potentialen_US
dc.subjectMethod developmenten_US
dc.subjectRange separationen_US
dc.subjectEnergy extrapolationen_US
dc.titleSystematic improvement of approximations with smooth models of the Coulomb potentialen_US
dc.typeThesisen_US

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