Metal-Insulator Transition in Strongly Correlated Quantum Confined SrVO<sub>3</sub> Superlattices
ORAL
Abstract
Superlattices (such as SrVO3/SrTiO3) have many interesting physical phenomena influenced by orbital degeneracy, quantum confinement, interfaces and electron-electron correlations to name a few. The use of varying the number of SrVO3 layers in superlattices gives a way to tune the strongly localized electron-electron correlations and the metal-insulator transition (MIT). These local correlations are beyond the predictive capabilities of standard density functional theory (DFT) calculations. Therefore, dynamical mean field theory (DMFT) needs to be used in conjunction with DFT (the DFT+DMFT method) to model these local correlations.
This talk will discuss our ongoing work on using the DFT+DMFT method to understand the fundamental electron correlation physics in previous experimental data of SrVO3/SrTiO3 superlattices. We investigate the effects on the correlated electron behavior of varying the thickness of SrVO3 layers and propose a potential mechanism behind the MIT in these systems.
This talk will discuss our ongoing work on using the DFT+DMFT method to understand the fundamental electron correlation physics in previous experimental data of SrVO3/SrTiO3 superlattices. We investigate the effects on the correlated electron behavior of varying the thickness of SrVO3 layers and propose a potential mechanism behind the MIT in these systems.
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Presenters
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Alyn James
Univ of Bristol
Authors
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Alyn James
Univ of Bristol
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Markus Aichhorn
Institute of Theoretical and Computational Physics, Graz University of Technology, Insitut für Theoretische Physik–Computational Physics, Graz Univ of Technology
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Jude Laverock
Univ of Bristol