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Prof. Braun developed the theory for nonuniform thermally activated magnetization reversal in nanowires which now forms the basis for the design of perpendicular magnetic recording media. Well before it was recognized experimentally, he theoretically predicted quasi one-dimensional behavior in magnetic nanowires and he introduced the now widely used notion of domain wall chirality. His work led to the prediction of the spontaneous emergence of spin currents in quantum spin chains, an effect that he and his collaborators subsequently observed via spin polarized neutron scattering. Furthermore he proposed and interpreted a series of experiments on nanolithographic arrays that led to the discovery of emergent monopoles in artificial spin ice together with colleagues from PSI and UCD. In addition to numerous publications in top research journals he also authored popular articles for the French and German versions of Scientific American and he holds two patents.
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Journal of Magnetism and Magnetic Materials (2022): 170062
Martin Paraliev,Arturo Alarcon, Vladimir Arsov,Simona Bettoni,Roger Biffiger, Marco Boll,Hans Braun,Alessandro Citterio,Paolo Craievich,Philipp Dijkstal,Sladana Dordevic,Eugenio Ferrari,
PHYSICAL REVIEW ACCELERATORS AND BEAMSno. 12 (2022)
Magnetic Nano- and Microwirespp.381-401, (2020)
Springer Series in Solid-State Sciences (2018): 1-40
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