Spin-Hall current and nonlocal transport in ferromagnet-free multiband models for SrTiO3 -based nanodevices in the presence of impurities
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C. A. Perroni | M. Bibes | M. Salluzzo | F. Trier | D. Giuliano | A. Nava
[1] C. A. Perroni,et al. Tunable Spin and Orbital Edelstein Effect at (111) LaAlO3/SrTiO3 Interface , 2022, Nanomaterials.
[2] Joo-Von Kim,et al. Oxide spin-orbitronics: spin–charge interconversion and topological spin textures , 2021, Nature Reviews Materials.
[3] B. Diény,et al. Review on spintronics: Principles and device applications , 2020, Journal of Magnetism and Magnetic Materials.
[4] F. Casanova,et al. Spin Hall effect in bilayer graphene combined with an insulator up to room temperature. , 2020, Nano letters.
[5] A. Fert,et al. Electric-Field Control of Spin Current Generation and Detection in Ferromagnet-Free SrTiO3-Based Nanodevices. , 2019, Nano letters.
[6] A. Fert,et al. Mapping spin–charge conversion to the band structure in a topological oxide two-dimensional electron gas , 2019, Nature Materials.
[7] S. Roche,et al. Tunable room-temperature spin galvanic and spin Hall effects in van der Waals heterostructures , 2019, Nature Materials.
[8] S. Roche,et al. Room-Temperature Spin Hall Effect in Graphene/MoS2 van der Waals Heterostructures. , 2018, Nano letters.
[9] Laurent Vila,et al. A new spin for oxide interfaces , 2018 .
[10] P. Torelli,et al. Study of equilibrium carrier transfer in LaAlO3/SrTiO3 from an epitaxial La1−xSrxMnO3 ferromagnetic layer , 2018 .
[11] J. Triscone,et al. Efficient spin-to-charge conversion in the 2D electron liquid at the LAO/STO interface , 2016 .
[12] A. Fert,et al. Highly efficient and tunable spin-to-charge conversion through Rashba coupling at oxide interfaces. , 2016, Nature materials.
[13] Jirong Sun,et al. Observation of inverse Edelstein effect in Rashba-split 2DEG between SrTiO3 and LaAlO3 at room temperature , 2016, Science Advances.
[14] S. Sengupta,et al. Universal Fabrication of 2D Electron Systems in Functional Oxides , 2016, Advanced materials.
[15] Junwei Liu,et al. Quantum spin Hall effect in two-dimensional transition metal dichalcogenides , 2014, Science.
[16] S. M. Walker,et al. Quasiparticle dynamics and spin–orbital texture of the SrTiO3 two-dimensional electron gas , 2014, Nature Communications.
[17] E. Altman,et al. A universal critical density underlying the physics of electrons at the LaAlO3/SrTiO3 interface , 2011, Nature Communications.
[18] Jirong Sun,et al. Metallic and insulating interfaces of amorphous SrTiO₃-based oxide heterostructures. , 2011, Nano letters.
[19] N. Reyren,et al. Electric field control of the LaAlO3/SrTiO3 interface ground state , 2008, Nature.
[20] Akira Ohtomo,et al. A high-mobility electron gas at the LaAlO3/SrTiO3 heterointerface , 2004, Nature.
[21] Stuart A. Wolf,et al. Spintronics : A Spin-Based Electronics Vision for the Future , 2009 .
[22] R. Raimondi,et al. Magnetoconductance of a two-dimensional metal in the presence of spin-orbit coupling , 2001, cond-mat/0110454.
[23] Michel Dyakonov,et al. Current-induced spin orientation of electrons in semiconductors , 1971 .
[24] M. Farle,et al. Journal of Magnetism and Magnetic Materials , 2022 .