Transport spin polarization in RuO$_2$ films
Alexandra J. Howzen, Sachin Gupta, Gavin Burnell, Nathan Satchell

TL;DR
This study demonstrates that epitaxial RuO$_2$ thin films exhibit orientation-dependent spin polarization and anomalous Hall effects consistent with altermagnetic behavior, highlighting superconducting transport spectroscopy as a tool for characterizing such materials.
Contribution
It provides experimental evidence of altermagnetic properties in RuO$_2$ thin films using transport measurements, clarifying previous conflicting reports.
Findings
Transport spin polarization is observed in RuO$_2$ films.
Anomalous Hall effect is orientation-dependent, appearing only in ultrathin (110) films.
No net magnetization is detected despite spin-polarized transport.
Abstract
Altermagnets host spin-split electronic bands without net magnetization, enabling spin-polarized transport in the absence of conventional ferromagnetism. RuO has been proposed as a candidate altermagnet, yet experimental reports remain conflicting, particularly between bulk-sensitive probes and thin-film measurements. Here we investigate the electronic transport properties of epitaxial RuO thin films using anomalous Hall effect measurements and point-contact Andreev reflection spectroscopy. We observe transport spin polarization and a strongly orientation-dependent anomalous Hall response, while magnetometry reveals no detectable net magnetization. The anomalous Hall effect appears only in ultrathin (110)-oriented films, consistent with symmetry-driven N\'eel-vector physics, and the measured transport spin polarization is systematically higher for (110)-oriented films than for…
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Taxonomy
TopicsTopological Materials and Phenomena · Chemical and Physical Properties of Materials · Advanced Condensed Matter Physics
