Finizio, SimoneWintz, SebastianMayr, SinaHuxtable, Alexandra J.Langer, ManuelBailey, JoeBurnell, GavinMarrows, Christopher H.Raabe, Jorg2020-12-192020-12-192020-12-192020-11-2310.1063/5.0029816https://infoscience.epfl.ch/handle/20.500.14299/174150WOS:000595729300001We report on the use of time-resolved scanning transmission x-ray microscopy imaging for the visualization of the dynamical canting of the magnetization induced by field-like spin-orbit torques in a perpendicularly magnetized microwire. In particular, we show how the contributions to the dynamical canting of the magnetization arising from the field-like spin-orbit torque can be separated from the heating-induced effects on the magnetization of the microwire. This method will allow for the imaging of the dynamical effects of spin-orbit torques in device-like structures and buried layers.Physics, AppliedPhysicsTime-resolved visualization of the magnetization canting induced by field-like spin-orbit torquestext::journal::journal article::research article