Observation of mirror-odd and mirror-even spin texture in ultrathin epitaxially strained RuO 2 films
- Yichen Zhang
- Seung Gyo Jeong
- Luca Buiarelli
- Seungjun Lee
- Yucheng Guo
- Jiaqin Wen
- Hang Li
- Sreejith Nair
- In Hyeok Choi
- Zheng Ren
- Ziqin Yue
- Jounghoon Hyun
- Tieqiong Zhang
- Alexei Fedorov
- Sung-Kwan Mo
- Hojoon Lim
- Adrian Hunt
- Iradwikanari Waluyo
- Junichiro Kono
- Ján Minár
- Jong Seok Lee
- Tony Low
- Turan Birol
- Rafael M. Fernandes
- Milan Radović
- Bharat Jalan
- Ming Yi
2026-07-29
Recently, rutile ruthenium dioxide (RuO 2 ) has attracted renewed interest due to expectations of prominent altermagnetic spin splitting. However, accumulating experimental evidence suggests that, in its bulk and thick-film forms, RuO 2 does not display any form of magnetic ordering. Despite this, the spin structure of RuO 2 remains largely unexplored in the ultrathin limit, where substrate-imposed epitaxial strain can be substantial. Here, we use spin-resolved angle-resolved photoemission spectroscopy, supported by ab initio calculations, to reveal the electronic structure of 2-nanometer-thick epitaxial RuO 2 heterostructures. We observe an unconventional spin texture characterized by the coexistence of mirror-even and mirror-odd momentum-dependent components. A comprehensive symmetry analysis rules out nonmagnetic origins of this spin texture. These findings suggest an emergent nonrelativistic spin structure enabled by epitaxial strain in the ultrathin limit, marking a distinct departure from the behavior of relaxed or bulk RuO 2 . Our work opens previously unexplored perspectives for exploring symmetry-breaking mechanisms and spin textures in oxide heterostructures.