Prediction of polarization vortices, charge modulation, flat bands, and moiré magnetism in twisted oxide bilayers

Fuente: arXiv
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Autores principales: Shahed, Naafis Ahnaf, Samanta, Kartik, Elekhtiar, Mohamed, Huang, Kai, Eom, Chang-Beom, Rzchowski, Mark S., Belashchenko, Kirill D., Tsymbal, Evgeny Y.
Formato: Preprint
Publicado: 2024
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author Shahed, Naafis Ahnaf
Samanta, Kartik
Elekhtiar, Mohamed
Huang, Kai
Eom, Chang-Beom
Rzchowski, Mark S.
Belashchenko, Kirill D.
Tsymbal, Evgeny Y.
author_facet Shahed, Naafis Ahnaf
Samanta, Kartik
Elekhtiar, Mohamed
Huang, Kai
Eom, Chang-Beom
Rzchowski, Mark S.
Belashchenko, Kirill D.
Tsymbal, Evgeny Y.
contents The recent surge of interest in moiré superlattices of twisted van der Waals compounds has spotlighted the emergence of unconventional superconductivity and novel electronic phases. However, the range of moiré phenomena can be dramatically expanded by incorporating complex oxide materials into twisted heterostructures. In this study, motivated by the recent breakthroughs in synthesis of free-standing oxide membranes, we explore the emergent structural and electronic properties of twisted oxide bilayers. We focus on the classic perovskite oxide, SrTiO3, and design SrTiO3 bilayers with a relative twist between the individual layers. Using density functional theory calculations, we predict the appearance of vortex-antivortex polarization patterns at the interface of the SrTiO3 bilayers driven by twist. We also predict charge modulation of the interfacial Ti ions induced by varying local coordination which follow the moiré pattern. Furthermore, we forecast the emergence of flat bands at large twist angles and the associated localized electronic states with moiré-periodic charge density, originating from the interlayer bonding effects resulting in the formation of dangling bonds. Finally, we predict that hole doping induces unconventional d0 magnetism in otherwise nonmagnetic SrTiO3, driven by the exchange splitting of the high-density O-p bands and producing the spin density with moiré periodicity. These results demonstrate a broad landscape of emergent phenomena which may occur in moiré-engineered oxide heterostructures showing far-reaching perspectives of these material systems for further fundamental studies and potential applications.
format Preprint
id arxiv_https___arxiv_org_abs_2412_03798
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Prediction of polarization vortices, charge modulation, flat bands, and moiré magnetism in twisted oxide bilayers
Shahed, Naafis Ahnaf
Samanta, Kartik
Elekhtiar, Mohamed
Huang, Kai
Eom, Chang-Beom
Rzchowski, Mark S.
Belashchenko, Kirill D.
Tsymbal, Evgeny Y.
Materials Science
Strongly Correlated Electrons
The recent surge of interest in moiré superlattices of twisted van der Waals compounds has spotlighted the emergence of unconventional superconductivity and novel electronic phases. However, the range of moiré phenomena can be dramatically expanded by incorporating complex oxide materials into twisted heterostructures. In this study, motivated by the recent breakthroughs in synthesis of free-standing oxide membranes, we explore the emergent structural and electronic properties of twisted oxide bilayers. We focus on the classic perovskite oxide, SrTiO3, and design SrTiO3 bilayers with a relative twist between the individual layers. Using density functional theory calculations, we predict the appearance of vortex-antivortex polarization patterns at the interface of the SrTiO3 bilayers driven by twist. We also predict charge modulation of the interfacial Ti ions induced by varying local coordination which follow the moiré pattern. Furthermore, we forecast the emergence of flat bands at large twist angles and the associated localized electronic states with moiré-periodic charge density, originating from the interlayer bonding effects resulting in the formation of dangling bonds. Finally, we predict that hole doping induces unconventional d0 magnetism in otherwise nonmagnetic SrTiO3, driven by the exchange splitting of the high-density O-p bands and producing the spin density with moiré periodicity. These results demonstrate a broad landscape of emergent phenomena which may occur in moiré-engineered oxide heterostructures showing far-reaching perspectives of these material systems for further fundamental studies and potential applications.
title Prediction of polarization vortices, charge modulation, flat bands, and moiré magnetism in twisted oxide bilayers
topic Materials Science
Strongly Correlated Electrons
url https://arxiv.org/abs/2412.03798