AC Current-Driven Magnetization Switching and Nonlinear Hall Rectification in a Magnetic Topological Insulator
arXiv:2504.10450 · doi:10.1002/adma.202506210
Abstract
Spin-orbit torque arising from the spin-orbit-coupled surface states of topological insulators enables current-induced control of magnetization with high efficiency. Here, alternating-current (AC) driven magnetization reversal is demonstrated in a semi-magnetic topological insulator (Cr,Bi,Sb)2Te3/(Bi,Sb)2Te3, facilitated by a low threshold current density of 1.5x10^9 A/m^2. Time-domain Hall voltage measurements using an oscilloscope reveal a strongly nonlinear and nonreciprocal Hall response during the magnetization reversal process. Fourier analysis of the time-varying Hall voltage identifies higher-harmonic signals and a rectified direct-current (DC) component, highlighting the complex interplay among the applied current, external magnetic field, and magnetization dynamics. Furthermore, a hysteretic behavior in the current-voltage characteristics gives rise to frequency mixing under dual-frequency excitation. This effect, distinct from conventional polynomial-based nonlinearities, allows for selective extraction of specific frequency components. The results demonstrate that AC excitation can not only switch magnetization efficiently but also induce tunable nonlinear responses, offering a new pathway for multifunctional spintronic devices with potential applications in energy-efficient memory, signal processing, and frequency conversion.
29 pages, 10 figures
References in corpus (24)
- Topological Insulators
- Quantized Anomalous Hall Effect in Magnetic Topological Insulators
- Magnetic switching by spin torque from the spin Hall effect
- Spin Transfer Torques
- Current-driven dynamics of chiral ferromagnetic domain walls
- Current-induced spin-orbit torques in ferromagnetic and antiferromagnetic systems
- Spin Transfer Torque Generated by the Topological Insulator Bi_2Se_3
- Emergent electrodynamics of skyrmions in a chiral magnet
- Interplay of spin-orbit torque and thermoelectric effects in ferromagnet/normal metal bilayers
- Fermi level dependent charge-to-spin current conversion by Dirac surface state of topological insulators
- Time- and spatially-resolved magnetization dynamics driven by spin-orbit torques
- Single-shot dynamics of spin-orbit torque and spin transfer torque switching in three-terminal magnetic tunnel junctions
- High-frequency rectification via chiral Bloch electrons
- Large Unidirectional Magnetoresistance in a Magnetic Topological Insulator
- Current-nonlinear Hall effect and spin-orbit torque magnetization switching in a magnetic topological insulator
- Soliton-like magnetic domain wall motion induced by the interfacial Dzyaloshinskii-Moriya interaction
- Emergent electromagnetism in solids
- Terahertz detection based on nonlinear Hall effect without magnetic field
- Pattern recognition with neuromorphic computing using magnetic-field induced dynamics of skyrmions
- Real-time Hall-effect detection of current-induced magnetization dynamics in ferrimagnets
- Cryogenic in-memory computing using magnetic topological insulators
- High-efficiency energy harvesting based on nonlinear Hall rectifier
- Dynamic transition and Galilean relativity of current-driven skyrmions
- Giant Hall Switching by Surface-State-Mediated Spin-Orbit Torque in a Hard Ferromagnetic Topological Insulator