Electronic states and magnetism driven quantum phenomena in pristine and Ce substituted Ga<sub>2</sub>O<sub>3</sub>
ORAL
Abstract
Here, we present structural, electronic, and magnetic properties of the most stable monocline pristine, and Ce substituted β-Ga2O3 calculated from density functional theory. First, we confirm the structural and chemical formation from cohesive and formation energies of the pristine phase and calculate defect formation of Ce-substituted composition. The calculations confirm a large direct band gap in the pristine phase. Ce atom is energetically favorable to substitute the octahedral Ga site and the Ce defect changes the wide band gap nonmagnetic semiconducting β-Ga2O3 to a weakly magnetic material with the main magnetic contribution coming from Ce-4f states. Further, we study the crucial interplay between local magnetic moments and electronic states to have a foundational understanding to bring these classes of materials for quantum applications.
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Presenters
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Yogendra Limbu
University of Iowa
Authors
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Yogendra Limbu
University of Iowa
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Michael E Flatté
University of Iowa, Department of Physics and Astronomy, University of Iowa, IA 52242, USA
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Durga Paudyal
Ames National Laboratory