Time-resolved scanning electron microscopy with polarization analysis

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Abstract

We demonstrate the feasibility of investigating periodically driven magnetization dynamics in a scanning electron microscope with polarization analysis based on spin-polarized low-energy electron diffraction. With the present setup, analyzing the time structure of the scattering events, we obtain a temporal resolution of 700 ps, which is demonstrated by means of imaging the field-driven 100 MHz gyration of the vortex in a soft-magnetic FeCoSiB square. Owing to the efficient intrinsic timing scheme, high-quality movies, giving two components of the magnetization simultaneously, can be recorded on the time scale of hours.

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Frömter, R., Kloodt, F., Rößler, S., Frauen, A., Staeck, P., Cavicchia, D. R., … Oepen, H. P. (2016). Time-resolved scanning electron microscopy with polarization analysis. Applied Physics Letters, 108(14). https://doi.org/10.1063/1.4945053

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