Electronic charge redistribution in LaAlO(001) thin films deposited at SrTiO(001) substrate: First principles analysis and the role of stoichiometry
arXiv:1205.4175 · doi:10.1103/PhysRevB.86.155410
Abstract
We present a comprehensive first-principles study of the electronic charge redistribution in atomically sharp LaAlO/SrTiO(001) heterointerfaces of both n- and p-types allowing for non-stoichiometric composition. Using two different computational methods within the framework of the density functional theory (linear combination of atomic orbitals and plane waves) we demonstrate that conducting properties of LaAlO/SrTiO(001) heterointerfaces strongly depend on termination of LaAlO (001) surface. We argue that both the polar "catastrophe" and the polar distortion scenarios may be realized depending on the interface stoichiometry. Our calculations predict that heterointerfaces with a non-stoichiometrc film---either LaO-terminated n-type or AlO-terminated p-type---may exhibit the conductivity of n- or p-type, respectively, independently of LaAlO(001) film thickness.
Final version for PRB
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