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- W3007265544 abstract "The ability to experimentally map the three-dimensional structure and dynamics in bulk and patterned three-dimensional ferromagnets is essential both for understanding fundamental micromagnetic processes, as well as for investigating technologically-relevant micromagnets whose functions are connected to the presence and dynamics of fundamental micromagnetic structures, such as domain walls and vortices. Here, we demonstrate time-resolved magnetic laminography, a technique which offers access to the temporal evolution of a complex three-dimensional magnetic structure with nanoscale resolution. We image the dynamics of the complex three-dimensional magnetization state in a two-phase bulk magnet with a lateral spatial resolution of 50 nm, mapping the transition between domain wall precession and the dynamics of a uniform magnetic domain that is attributed to variations in the magnetization state across the phase boundary. The capability to probe three-dimensional magnetic structures with temporal resolution paves the way for the experimental investigation of novel functionalities arising from dynamic phenomena in bulk and three-dimensional patterned nanomagnets." @default.
- W3007265544 created "2020-03-06" @default.
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- W3007265544 date "2020-02-24" @default.
- W3007265544 modified "2023-10-02" @default.
- W3007265544 title "Time-resolved imaging of three-dimensional nanoscale magnetization dynamics" @default.
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- W3007265544 doi "https://doi.org/10.1038/s41565-020-0649-x" @default.
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