Javascript must be enabled to continue!
Symmetry mismatch-driven perpendicular magnetic anisotropy for perovskite/brownmillerite heterostructures
View through CrossRef
AbstractGrouping different transition metal oxides together by interface engineering is an important route toward emergent phenomenon. While most of the previous works focused on the interface effects in perovskite/perovskite heterostructures, here we reported on a symmetry mismatch-driven spin reorientation toward perpendicular magnetic anisotropy in perovskite/brownmillerite heterostructures, which is scarcely seen in tensile perovskite/perovskite heterostructures. We show that alternately stacking perovskite La2/3Sr1/3MnO3 and brownmillerite LaCoO2.5 causes a strong interface reconstruction due to symmetry discontinuity at interface: neighboring MnO6 octahedra and CoO4 tetrahedra at the perovskite/brownmillerite interface cooperatively relax in a manner that is unavailable for perovskite/perovskite interface, leading to distinct orbital reconstructions and thus the perpendicular magnetic anisotropy. Moreover, the perpendicular magnetic anisotropy is robust, with an anisotropy constant two orders of magnitude greater than the in-plane anisotropy of the perovskite/perovskite interface. The present work demonstrates the great potential of symmetry engineering in designing artificial materials on demand.
Springer Science and Business Media LLC
Title: Symmetry mismatch-driven perpendicular magnetic anisotropy for perovskite/brownmillerite heterostructures
Description:
AbstractGrouping different transition metal oxides together by interface engineering is an important route toward emergent phenomenon.
While most of the previous works focused on the interface effects in perovskite/perovskite heterostructures, here we reported on a symmetry mismatch-driven spin reorientation toward perpendicular magnetic anisotropy in perovskite/brownmillerite heterostructures, which is scarcely seen in tensile perovskite/perovskite heterostructures.
We show that alternately stacking perovskite La2/3Sr1/3MnO3 and brownmillerite LaCoO2.
5 causes a strong interface reconstruction due to symmetry discontinuity at interface: neighboring MnO6 octahedra and CoO4 tetrahedra at the perovskite/brownmillerite interface cooperatively relax in a manner that is unavailable for perovskite/perovskite interface, leading to distinct orbital reconstructions and thus the perpendicular magnetic anisotropy.
Moreover, the perpendicular magnetic anisotropy is robust, with an anisotropy constant two orders of magnitude greater than the in-plane anisotropy of the perovskite/perovskite interface.
The present work demonstrates the great potential of symmetry engineering in designing artificial materials on demand.
Related Results
Effect of lattice mismatch stress on magnetic domain of epitaxial single crystal (BiTm)3(GaFe)5O12 film
Effect of lattice mismatch stress on magnetic domain of epitaxial single crystal (BiTm)3(GaFe)5O12 film
Yttrium iron garnet (YIG) film is a kind of magnetic film and has been investigated extensively because of its excellent magnetic properties and various applications in different f...
Investigation of Degradation of Organometal Halide Perovskite Film and Solar Cell
Investigation of Degradation of Organometal Halide Perovskite Film and Solar Cell
Organometal hybrid perovskite material has emerged as an attractive competitor in the field of photovoltaics due to its promising potential of low-cost and high-efficiency photovol...
Enabling Continuous Processing of Perovskite Solar Cells
Enabling Continuous Processing of Perovskite Solar Cells
The perovskite solar cell since its introduction in 2010 has received a great deal of attention with efficiencies exceeding 20%, the highest for a solution deposited device. This i...
Tunable Anomalous Hall Effect in Broken–Symmetry Integrated Perovskite/Brownmillerite Superlattices
Tunable Anomalous Hall Effect in Broken–Symmetry Integrated Perovskite/Brownmillerite Superlattices
AbstractThe anomalous Hall effect (AHE), a hallmark of broken time–reversal symmetry, serves as a powerful tool for probing magnetic states and elucidating complex spin–orbit inter...
Seismic anisotropy and velocity structure in North Island, New Zealand
Seismic anisotropy and velocity structure in North Island, New Zealand
<p>This thesis investigates crustal and upper mantle seismic anisotropy, via shear wave splitting (SWS) analysis, across the Hikurangi subduction zone of the North Island, Ne...
ANISOTROPY QUANTIFICATION USING HIGH-RESOLUTION WHOLE-CORE CT-SCAN IMAGES
ANISOTROPY QUANTIFICATION USING HIGH-RESOLUTION WHOLE-CORE CT-SCAN IMAGES
Spatial anisotropy and heterogeneity in petrophysical properties can significantly affect formation evaluation of hydrocarbon bearing formations. A common example is permeability a...
Development of Solution-Processed Perovskite Semiconductors Lasers
Development of Solution-Processed Perovskite Semiconductors Lasers
Lead halide perovskite is a new photovoltaic material with excellent material characteristics, such as high optical absorption coefficient, long carrier transmission length, long c...
Interface engineering approaches for efficient and robust perovskite solar cells
Interface engineering approaches for efficient and robust perovskite solar cells
The field of perovskite photovoltaics has been witnessing a surge of interest over the past few years across the breadth of advanced nanomaterials, nanoscience and nanotechnology. ...

