Tunable Anomalous Hall Effect in a Kagomé Ferromagnetic Weyl Semimetal

Kagomé铁磁性Weyl半金属中的可调谐异常霍尔效应

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Abstract

Emerging from the intricate interplay of topology and magnetism, the giant anomalous Hall effect (AHE) is the most known topological property of the recently discovered kagomé ferromagnetic Weyl semimetal Co(3)Sn(2)S(2) with the magnetic Co atoms arranged on a kagomé lattice. Here it is reported that the AHE in Co(3)Sn(2)S(2) can be fine-tuned by an applied magnetic field orientated within ≈2° of the kagomé plane, while beyond this regime, it stays unchanged. Particularly, it can vanish in magnetic fields parallel to the kagomé plane and even decrease in magnetic fields collinear with the spin direction. This tunable AHE can be attributed to local spin switching enabled by the geometrical frustration of the magnetic kagomé lattice, revealing that spins in a kagomé ferromagnet change their switching behavior as the magnetic field approaches the kagomé plane. These results also suggest a versatile way to tune the properties of a kagomé magnet.

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