DOE OSTI · 1994763
Anisotropic superconductivity at KTaO 3 (111) interfaces
Abstract
A two-dimensional, anisotropic superconductivity was recently found at the KTaO 3 (111) interfaces. The nature of the anisotropic superconducting transition remains a subject of debate. To investigate the origins of the observed behavior, we grew epitaxial KTaO 3 (111)-based heterostructures. We show that the superconductivity is robust against the in-plane magnetic field and violates the Pauli limit. We also show that the Cooper pairs are more resilient when the bias is along [11$\bar{2}$] (I ∥ [11$\bar{2}$]) and the magnetic field is along [1$\bar{1}$0] (B ∥ [1$\bar{1}$0]). We discuss the anisotropic nature of superconductivity in the context of electronic structure, orbital character, and spin texture at the KTaO 3 (111) interfaces. The results point to future opportunities to enhance superconducting transition temperatures and critical fields in crystalline, two-dimensional superconductors with strong spin-orbit coupling.
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Arnault, Ethan G., Al-Tawhid, Athby H., Salmani-Rezaie, Salva, Muller, David A., Kumah, Divine P., Bahramy, Mohammad S., Finkelstein, Gleb, Ahadi, Kaveh. 2023-02-15. Anisotropic superconductivity at KTaO 3 (111) interfaces. https://doi.org/10.1126/sciadv.adf1414
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