Spontaneous nonreciprocal transport in a gate-tunable ferromagnetic Rashba 2-dimensional electron gas
Spontaneous nonreciprocal transport in a gate-tunable ferromagnetic Rashba 2-dimensional electron gas
The broken inversion symmetry at interfaces of complex oxides gives rise to emergent phenomena, including ferromagnetism and Rashba spin-orbit coupling (SOC), which profoundly influence the electronic structure by entangling spin and momentum. While the interplay between Rashba SOC and ferromagnetism is theoretically intriguing, its experimental manifestations remain largely unexplored. Here, we demonstrate that ferromagnetic 2DEGs at SrTiO$_3$-based interfaces exhibit spontaneous nonreciprocal transport - a distinctive hallmark of Rashba ferromagnets - even in the absence of an external magnetic field. This nonreciprocal response, along with clear signatures of ferromagnetism such as anisotropic magnetoresistance and the anomalous Hall effect (AHE), is strongly tunable by gate voltage. Remarkably, the AHE not only varies in amplitude but even reverses sign, reflecting a subtle interplay between Fermi level position and Berry curvature distribution. These results establish SrTiO$_3$ 2DEGs as a model platform for studying Rashba ferromagnetism and demonstrate active control over transport phenomena in time- and inversion-symmetry-broken systems, paving the way for gate-tunable spintronic devices.
Gabriel Lazrak、Radu Abrudan、Borge Göbel、David Hrabovsky、Chen Luo、Victor Ukleev、Srijani Mallik、Luis M. Vicente-Arche、Florin Radu、Sergio Valencia、Annika Johansson、Agnès Barthélémy、Manuel Bibes
物理学材料科学
Gabriel Lazrak,Radu Abrudan,Borge Göbel,David Hrabovsky,Chen Luo,Victor Ukleev,Srijani Mallik,Luis M. Vicente-Arche,Florin Radu,Sergio Valencia,Annika Johansson,Agnès Barthélémy,Manuel Bibes.Spontaneous nonreciprocal transport in a gate-tunable ferromagnetic Rashba 2-dimensional electron gas[EB/OL].(2025-08-21)[2025-09-02].https://arxiv.org/abs/2508.15424.点此复制
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