Magnetic fluctuations above the Curie temperature of ultrathin CoFeB films enhance damping-like spin-orbit torque and suppress field-like torque via mixing of longitudinal and transverse interfacial spin conductances.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
years
2026 2verdicts
CONDITIONAL 2representative citing papers
A d-wave altermagnet tight-binding model is shown to undergo an insulator-to-nodal-semimetal transition at ta=J/4, with information-theoretic markers tracking the transition and a proposed spin-filter FET from edge-state hybridization.
citing papers explorer
-
Fluctuation-Driven Enhancement of Spin-Orbit Torque near the Curie Temperature of Ultrathin Ferromagnets
Magnetic fluctuations above the Curie temperature of ultrathin CoFeB films enhance damping-like spin-orbit torque and suppress field-like torque via mixing of longitudinal and transverse interfacial spin conductances.
-
Real and momentum space analysis of topological phases in 2D d-wave altermagnets
A d-wave altermagnet tight-binding model is shown to undergo an insulator-to-nodal-semimetal transition at ta=J/4, with information-theoretic markers tracking the transition and a proposed spin-filter FET from edge-state hybridization.