Unusual Hall Effect Anomaly in MnSi under Pressure
Minhyea Lee, W. Kang, Y. Onose, Yoshinori Tokura, N. P. Ong
Abstract
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Minhyea Lee, W. Kang, Y. Onose, Yoshinori Tokura, N. P. Ong
Abstract
Open-access reader
We report the observation of a highly unusual Hall current in the helical magnet MnSi in an applied pressure P=6-12 kbars. The Hall conductivity displays a distinctive stepwise field profile quite unlike any other Hall response observed in solids. We identify the origin of this Hall current with the effective real-space magnetic field due to chiral spin textures, which may be a precursor of the partial-order state at P>14.6 kbar. We discuss evidence favoring the chiral spin mechanism for the origin of the observed Hall anomaly.
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We report the observation of a highly unusual Hall current in the helical magnet MnSi in an applied pressure P=6-12 kbars. The Hall conductivity displays a distinctive stepwise field profile quite unlike any other Hall response observed in solids. We identify the origin of this Hall current with the effective real-space magnetic field due to chiral spin textures, which may be a precursor of the partial-order state at P>14.6 kbar. We discuss evidence favoring the chiral spin mechanism for the origin of the observed Hall anomaly.
Key concepts: Condensed matter physics, Hall effect, Anomaly (physics), Spin (aerodynamics), Physics, Hall conductivity, Thermal Hall effect, Magnetic field