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Mikhail Letushev

Publications and source records attributed to Mikhail Letushev.

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Modeling Ferrimagnets in MuMax3: Temperature-Dependent Skyrmion Dynamics

In this work, we propose an approach to modeling ferrimagnets in MuMax3. We show that by specifying two interacting magnetic sublattices as separate layers, it is possible to reproduce a sperimagnetic-like ordering of magnetization. In such a system, magnetic and angular momentum compensation states can be achieved only by varying the temperature while keeping other parameters fixed. This behavior arises from the different temperature dependencies of the magnetization projections in the sublattices, as determined by their thermal functions. We also investigated the motion of a skyrmion under the action of a spin-polarized current. By changing the temperature, we observed both the disappearance of the skyrmion Hall effect at the angular compensation point and the maximum velocity of translational motion. The latter effect requires a modified version of MuMax3 that allows the g-factor to be specified for different regions. The proposed approach can also be applied to study other phenomena in ferrimagnets, including the influence of composition on the magnetic and angular compensation temperatures, the tilted phase, domain-wall motion, and effects arising from non-uniform current or temperature distributions.

cond-mat.other

Spin-Orbit Torque-Assisted Detection of the Canted Magnetization Phase in a CoTb-Based Ferrimagnet

Ferrimagnets have the potential to play a key role in spintronics due to their high stability, low energy consumption, and rapid magnetic state switching. These characteristics are typically observed in ferrimagnetic materials near magnetic or angular compensation states. Near the magnetic compensation point, an external field can disrupt the collinearity between the sublattices, leading to aligned magnetic projections. In this work, a violation of antiferromagnetic ordering is detected by a change in the direction of the effective field induced by spin-orbit torque, without altering the dominance type. In the studied W-Co70Tb30-Ru structure, the canted phase region is observed near room temperature under external fields of approximately 0.1 T. Using macrospin simulations and analytical derivations, a correlation is established between anisotropy, interlattice exchange interaction, and the presence of the canted phase region.

cond-mat.mtrl-sci