Perovskite oxide interfaces have been used recently as platforms for demonstrating rich physical properties that are not possessed by their bulk constituents. In this work, we will not only demonstrate rich physical properties at polar perovskite oxide interfaces, but also the tuning of such properties by switching the polarization in PbTiO3/tetragonal BiFeO3 (BFO) two-dimensional ferroelectric heterostructures (HSs). Our first-principles calculations reveal that both magnetism and conductivity can be induced by the discontinuity of the ferroelectric (FE) polarization and the valence states at the interface, and they can also be robustly manipulated by reversing polarization. These properties include the coupling between an interfacial two-...
Thin-film oxide heterostructures show great potential for use in spintronic memories, where electron...
Ferroelectric materials are characterized by a reversible spontaneous electric polarization in the a...
The control of material interfaces at the atomic level has led to novel interfacial properties and f...
The interface of perovskite oxides has recently become a platform to functionalize novel physical pr...
The electromagnetic properties at the interface of heterostructure are sensitive to the interfacial ...
A quasi-two dimensional electron gas (2DEG) in oxide heterostructures such as LaAlO3/SrTiO3 has uniq...
Emergent physical properties often arise at interfaces of complex oxide heterostructures due to the ...
Utilization of the switchable spontaneous polarization of nanometer scale ferroelectric materials of...
Novel phenomena appear when two different oxide materials are combined together to form an interface...
Utilization of the switchable spontaneous polarization of nanometer scale ferroelectric materials of...
Due to the demand of controlling magnetism by electric fields for future storage devices, materials ...
The demonstration of a quasi-two-dimensional electron gas (2DEG) in LaAlO3=SrTiO3 heterostructures h...
© 2020 The perovskite oxide interface has attracted extensive attention as a platform for achieving ...
Perovskite oxide interfaces have become a platform for the realization of many unexpected physical p...
Robust control of magnetism is both fundamentally and practically meaningful and highly desirable, a...
Thin-film oxide heterostructures show great potential for use in spintronic memories, where electron...
Ferroelectric materials are characterized by a reversible spontaneous electric polarization in the a...
The control of material interfaces at the atomic level has led to novel interfacial properties and f...
The interface of perovskite oxides has recently become a platform to functionalize novel physical pr...
The electromagnetic properties at the interface of heterostructure are sensitive to the interfacial ...
A quasi-two dimensional electron gas (2DEG) in oxide heterostructures such as LaAlO3/SrTiO3 has uniq...
Emergent physical properties often arise at interfaces of complex oxide heterostructures due to the ...
Utilization of the switchable spontaneous polarization of nanometer scale ferroelectric materials of...
Novel phenomena appear when two different oxide materials are combined together to form an interface...
Utilization of the switchable spontaneous polarization of nanometer scale ferroelectric materials of...
Due to the demand of controlling magnetism by electric fields for future storage devices, materials ...
The demonstration of a quasi-two-dimensional electron gas (2DEG) in LaAlO3=SrTiO3 heterostructures h...
© 2020 The perovskite oxide interface has attracted extensive attention as a platform for achieving ...
Perovskite oxide interfaces have become a platform for the realization of many unexpected physical p...
Robust control of magnetism is both fundamentally and practically meaningful and highly desirable, a...
Thin-film oxide heterostructures show great potential for use in spintronic memories, where electron...
Ferroelectric materials are characterized by a reversible spontaneous electric polarization in the a...
The control of material interfaces at the atomic level has led to novel interfacial properties and f...