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Uniaxial spin texture in a superconducting electron gas revealed by exchange interactions
Abstract Two-dimensional (2D) superconductors with spin-textured Fermi surfaces can be a platform for realizing unconventional pairing states and are of substantial interest in the context of quantum information science and superconducting spintronics/orbitronics. We observed an unusual in-plane uniaxial anisotropy in the superconducting 2D electron gas (2DEG) formed at EuOx/KTaO3 (110) interfaces. This anisotropy is not evident in AlOx/KTaO3 (110) where the overlayer is nonmagnetic.
Nanometer Resolution Structure‐Emission Correlation of Individual Quantum Emitters via Enhanced Cathodoluminescence in Twisted Hexagonal Boron Nitride
1 Introduction A deep understanding of solid-state quantum emitters (QEs), especially those based on atomic-scale defects, is essential for advancing quantum information science, including applications in quantum computing, communication, and sensing.[1, 2] Since the optical and electronic properties of QEs are governed by their atomic structures, correlating these atomic structures with optical properties is crucial.
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