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Nanoscale Magnetic Imaging using Circularly Polarized High-Harmonic Radiation

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arxiv 1706.07695 v1 pith:3UMKZWQC submitted 2017-06-23 physics.optics cond-mat.mes-hall

Nanoscale Magnetic Imaging using Circularly Polarized High-Harmonic Radiation

classification physics.optics cond-mat.mes-hall
keywords imagingmagneticnanoscalecircularlyhigh-harmonicphasepolarizedquantitative
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This work demonstrates nanoscale magnetic imaging using bright circularly polarized high-harmonic radiation. We utilize the magneto-optical contrast of worm-like magnetic domains in a Co/Pd multilayer structure, obtaining quantitative amplitude and phase maps by lensless imaging. A diffraction-limited spatial resolution of 49 nm is achieved with iterative phase reconstruction enhanced by a holographic mask. Harnessing the unique coherence of high harmonics, this approach will facilitate quantitative, element-specific and spatially-resolved studies of ultrafast magnetization dynamics, advancing both fundamental and applied aspects of nanoscale magnetism.

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