Uniaxial spin texture in a superconducting electron gas revealed by exchange interactions
- Junyi Yang
- Changjiang Liu
- Xianjing Zhou
- Hanyu Hou
- Kaijun Yin
- Jianguo Wen
- John Pearson
- Alexey Suslov
- Dafei Jin
- Jidong S. Jiang
- Ulrich Welp
- Jian-Min Zuo
- Michael R. Norman
- Anand Bhattacharya
2026-05-12
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 EuO x /KTaO 3 (110) interfaces. This anisotropy is not evident in AlO x /KTaO 3 (110) where the overlayer is nonmagnetic. Our results are consistent with a highly anisotropic “half-Rashba” spin-textured Fermi surface in 2DEGs formed at the KTaO 3 (110) interface that is hidden from external magnetic fields due to a near cancellation between orbital and spin moments but revealed by exchange interactions of the electrons in the 2DEG with Eu moments near the EuO x /KTaO 3 (110) interface. The interactions between the uniaxial spin texture and the magnetic overlayer offer previously unexplored ways to explore the interplay between magnetism and 2D superconductivity.