We demonstrate a route to manipulate the polarization and internal electric field of a complex oxide heterostructure using a layering sequence based on the LaAlO3-SrTiO3 interface. By combining sensitive atomic-level mapping of the structure using direct x-ray phase-retrieval methods with theoretical modeling of the electrostatic charge and polarization, we have devised a novel single-domain polar heterostructure. We find that ionic rearrangement results in strain and free energy minimization, and eliminates the polarization discontinuity leading to a two-fold increase of the spontaneous polarization towards the surface of an ultra-thin single-domain BaTiO3 film.ISSN:2166-532
The polarization induced at the LaAlO3/SrTiO3 interface has been explored by optical second harmonic...
Demonstration of a tunable conductivity of the LaAlO<sub>3</sub>/SrTiO<sub>3</sub> interfaces drew s...
The electromagnetic properties at the interface of heterostructure are sensitive to the interfacial ...
Ionic crystals terminated at oppositely charged polar surfaces are inherently unstable and expected ...
© 2019, © 2019 Taylor & Francis Group, LLC. We investigate the structural and electronic propertie...
The success of oxide electronics depends on the ability to design functional properties such as ferr...
International audienceBaTiO 3 ultrathin films (thickness ≈ 1.6 nm) with in-and out-of-plane polariza...
In order to bring the diverse functionalities of transition metal oxides into modern electronics, it...
Ferroelectric materials hold significant promise for potential applications in a number of fields in...
A quasi-two dimensional electron gas (2DEG) in oxide heterostructures such as LaAlO3/SrTiO3 has uniq...
Advances in modern computational techniques have provided us with the ability to develop a fundament...
A combined experimental and theoretical investigation of the electronic structure of the archetypal ...
Understanding the crystal-field splitting and orbital polarization in noncentrosymmetric systems suc...
Electrostatic fields tune the ground state of interfaces between complex oxide materials. Electronic...
This dissertation is focused on the study of polarization-related electronic properties of ferroelec...
The polarization induced at the LaAlO3/SrTiO3 interface has been explored by optical second harmonic...
Demonstration of a tunable conductivity of the LaAlO<sub>3</sub>/SrTiO<sub>3</sub> interfaces drew s...
The electromagnetic properties at the interface of heterostructure are sensitive to the interfacial ...
Ionic crystals terminated at oppositely charged polar surfaces are inherently unstable and expected ...
© 2019, © 2019 Taylor & Francis Group, LLC. We investigate the structural and electronic propertie...
The success of oxide electronics depends on the ability to design functional properties such as ferr...
International audienceBaTiO 3 ultrathin films (thickness ≈ 1.6 nm) with in-and out-of-plane polariza...
In order to bring the diverse functionalities of transition metal oxides into modern electronics, it...
Ferroelectric materials hold significant promise for potential applications in a number of fields in...
A quasi-two dimensional electron gas (2DEG) in oxide heterostructures such as LaAlO3/SrTiO3 has uniq...
Advances in modern computational techniques have provided us with the ability to develop a fundament...
A combined experimental and theoretical investigation of the electronic structure of the archetypal ...
Understanding the crystal-field splitting and orbital polarization in noncentrosymmetric systems suc...
Electrostatic fields tune the ground state of interfaces between complex oxide materials. Electronic...
This dissertation is focused on the study of polarization-related electronic properties of ferroelec...
The polarization induced at the LaAlO3/SrTiO3 interface has been explored by optical second harmonic...
Demonstration of a tunable conductivity of the LaAlO<sub>3</sub>/SrTiO<sub>3</sub> interfaces drew s...
The electromagnetic properties at the interface of heterostructure are sensitive to the interfacial ...