Time-domain switching measurements in FeCoB nanomagnets yield high-precision coercive field, retention time, delta, and nucleation-domain size via a linear Néel-model fit.
Measurements of spin polarization of FeB and FeCoB nanomagnets by the Anomalous Hall effect
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abstract
A new method to measure the spin polarization of a ferromagnetic nanomagnet is proposed and experimentally demonstrated. A high precision, repeatability and simplicity are the features of the proposed method. The dependency of the spin polarization on the gate voltage and the bias current were observed.
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cond-mat.mes-hall 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
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Thermally activated magnetization reversal in a FeCoB nanomagnet. High-precision measurement method of coercive field, delta, retention time and size of nucleation domain
Time-domain switching measurements in FeCoB nanomagnets yield high-precision coercive field, retention time, delta, and nucleation-domain size via a linear Néel-model fit.