arXiv · 2605.10747
Theory of Spin-splitter Magnetoresistance in Altermagnets
Abstract
We develop a theory of angular-dependent magnetoresistance (ADMR) in metallic altermagnets coupled to ferromagnetic insulators and establish criteria that distinguish them from conventional compensated magnets with spin-orbit coupling. We show that, once its full set of angular dependencies is established, the spin-splitter magnetoresistance (SSMR)-- recently reported in the bilayer geometry of H. Chen et al. [Adv. Mater. 37, 2507764 (2025)] -- would constitute a smoking-gun signature of collinear d-wave altermagnetism in metallic systems. Although SSMR has been regarded as a close analogue of spin Hall magnetoresistance (SMR), we demonstrate that the two differ qualitatively in three key respects: SSMR depends solely on the relative orientation between the ferromagnetic magnetization and the altermagnetic N\'eel vector, yields a longitudinal ADMR response of opposite sign, and features a direct proportionality between longitudinal and transverse ADMR signals, absent in SMR. Building on these distinctions, we further show that the full angular dependence of the SSMR provides a practical recipe to extract the direction of the N\'eel vector from customary magnetoresistance measurements. These results provide a clear route to unambiguously identify altermagnets in transport.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Tim Kokkeler, Vitaly N. Golovach, F. Sebastian Bergeret. 2026-05-11. Theory of Spin-splitter Magnetoresistance in Altermagnets. https://arxiv.org/abs/2605.10747
Cite the original work for its findings. Save a collection to share your selection of sources.