Anisotropic 2D electron gas at KTaO<sub>3</sub>(110) interface
ORAL
Abstract
Quantum confinement and strong spin-orbit coupling in two-dimensional (2D) system often give rise to exotic emergent phenomenon. In the recently discovered superconducting 2D electron gas at interfaces KTaO3 (110) interface, we have found evidence for an in-plane Ising spin texture. For a polycrystalline ferromagnetic overlayer of EuOx on KTaO3, we observe a highly anisotropic and hysteric magnetoresistance. The hysteric behavior in magnetoresistance is consistent with the coercivity field of magnetization in EuOx overlayer, indicating an existence of strong magnetic proximity effect between two layers. The highly anisotropic magnetoresistance persists from normal state to superconducting transition.
Funding acknowledgement: Research was supported by DOE BES, Materials Science and Engineering Division. Use of Center for Nanoscale Materials at Argonne was supported under contract number DE-AC02-06CH11357. Partial financial support was provided by the College of Arts and Sciences, University at Buffalo, SUNY.
Funding acknowledgement: Research was supported by DOE BES, Materials Science and Engineering Division. Use of Center for Nanoscale Materials at Argonne was supported under contract number DE-AC02-06CH11357. Partial financial support was provided by the College of Arts and Sciences, University at Buffalo, SUNY.
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Presenters
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Junyi Yang
Argonne National Laboratory
Authors
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Junyi Yang
Argonne National Laboratory
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Changjiang Liu
State Univ of NY - Buffalo
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John E Pearson
Argonne National Laboratory
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Alexey Suslov
National High Magnetic Field Laboratory
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Jidong S Jiang
Argonne National Laboratory
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Ulrich Welp
Argonne National Laboratory
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Michael Ray Norman
Argonne National Laboratory
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Anand Bhattacharya
Argonne National Laboratory