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Varignon, Julien and Santamaría Sánchez-Barriga, Jacobo and Bibes, Manuel (2019) Electrically switchable and tunable rashba-type spin splitting in covalent perovskite oxides. Physical review letters, 122 (11). ISSN 0031-9007
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Official URL: http://dx.doi.org/10.1103/PhysRevLett.122.116401
Abstract
In transition-metal perovskites (ABO_3) most physical properties are tunable by structural parameters such as the rotation of the BO_6 octahedra. Examples include the Neel temperature of orthoferrites, the conductivity of mixed-valence manganites, or the band gap of rare-earth scandates. Since oxides often hold large internal electric dipoles and can accommodate heavy elements, they also emerge as prime candidates to display Rashba spin-orbit coupling, through which charge and spin currents may be efficiently interconverted. However, despite a few experimental reports in SrTiO_3-based interface systems, the Rashba interaction has been little studied in these materials, and its interplay with structural distortions remains unknown. In this Letter, we identify a bismuth-based perovskite with a large, electrically switchable Rashba interaction whose amplitude can be controlled by both the ferroelectric polarization and the breathing mode of oxygen octahedra. This particular structural parameter arises from the strongly covalent nature of the Bi-O bonds, reminiscent of the situation in perovskite nickelates. Our results not only provide novel strategies to craft agile spin-charge converters but also highlight the relevance of covalence as a powerful handle to design emerging properties in complex oxides.
Item Type: | Article |
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Additional Information: | ©2019 American Physical Society |
Uncontrolled Keywords: | Neutron-diffraction; Magnetic-properties; Disproportionation; Transitions; Babio3 |
Subjects: | Sciences > Physics > Materials Sciences > Physics > Solid state physics |
ID Code: | 55372 |
Deposited On: | 28 May 2019 15:07 |
Last Modified: | 29 May 2019 07:43 |
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