Longitudinal and transverse magnetoresistance in films with tilted out-of-plane magnetic anisotropy
arXiv:1808.00846 · doi:10.1103/PhysRevB.99.064432
Abstract
Tilted off-plane magnetic anisotropy induces two unusual characteristic magnetotransport phenomena: extraordinary Hall effect in the presence of an in-plane magnetic field, and non-monotonic anisotropic magnetoresistance in the presence of a field normal to the sample plane. We show experimentally that these effects are generic, appearing in multiple ferromagnetic systems with tilted anisotropy introduced either by oblique deposition from a single source or in binary systems co-deposited from separate sources. We present a theoretical model demonstrating that these observations are natural results of the standard extraordinary Hall effect and anisotropic magnetoresistance, when the titled anisotropy is properly accounted for. Such a scenario may help explaining various previous intriguing measurements by other groups.
21 single column pages + 9 figures; v2: published version
References in corpus (1)
Cited by in corpus (8)
- Layered Antiferromagnetism Induces Large Negative Magnetoresistance in the van der Waals Semiconductor CrSBr
- Magnetotransport as diagnostic of spin reorientation: kagome ferromagnet as a case study
- Non-planar geometrical effects on the magnetoelectrical signal in a three-dimensional nanomagnetic circuit
- Evidence of itinerant holes for long-range magnetic order in tungsten diselenide semiconductor with vanadium dopants
- Magnetotransport in ferromagnetic FeGe semimetallic thin films
- Large Amplitude Spin-Hall Oscillations due to Field-like Torque
- Experimental determination of the orientation of tilted magnetic anisotropy by measuring Hall voltage
- Atomic Origins of Magnetic Anisotropy in Ru-substituted Manganite Films