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Skyrmion Lattice Topological Hall Effect near Room Temperature.


ABSTRACT: Magnetic skyrmions are stable nanosized spin structures that can be displaced at low electrical current densities. Because of these properties, they have been proposed as building blocks of future electronic devices with unprecedentedly high information density and low energy consumption. The electrical detection of an ordered skyrmion lattice via the Topological Hall Effect (THE) in a bulk crystal, has so far been demonstrated only at cryogenic temperatures in the MnSi family of compounds. Here, we report the observation of a skyrmion lattice Topological Hall Effect near room temperature (276?K) in a mesoscopic lamella carved from a bulk crystal of FeGe. This region coincides with the skyrmion lattice location revealed by neutron scattering. We provide clear evidence of a re-entrant helicoid magnetic phase adjacent to the skyrmion phase, and discuss the large THE amplitude (5?n?.cm) in view of the ordinary Hall Effect.

SUBMITTER: Leroux M 

PROVIDER: S-EPMC6195581 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Skyrmion Lattice Topological Hall Effect near Room Temperature.

Leroux Maxime M   Stolt Matthew J MJ   Jin Song S   Pete Douglas V DV   Reichhardt Charles C   Maiorov Boris B  

Scientific reports 20181019 1


Magnetic skyrmions are stable nanosized spin structures that can be displaced at low electrical current densities. Because of these properties, they have been proposed as building blocks of future electronic devices with unprecedentedly high information density and low energy consumption. The electrical detection of an ordered skyrmion lattice via the Topological Hall Effect (THE) in a bulk crystal, has so far been demonstrated only at cryogenic temperatures in the MnSi family of compounds. Here  ...[more]

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