Article ID Journal Published Year Pages File Type
1519182 Journal of Physics and Chemistry of Solids 2009 5 Pages PDF
Abstract

The magnetization of quantum dots (QDs) is discussed in terms of a relatively simple but exactly solvable model Hamiltonian. The model predicts oscillations in spin polarization as a function of dot radius for a fixed electron density. These oscillations in magnetization are shown to yield distinct signature in the momentum density of the electron gas, suggesting the usefulness of momentum resolved spectroscopies for investigating the magnetization of dot systems. We also present variational quantum Monte Carlo calculations on a square dot containing 12 electrons in order to gain insight into correlation effects on the interactions between like and unlike spins in a QD.

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Physical Sciences and Engineering Materials Science Electronic, Optical and Magnetic Materials
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