Part of a collection of reviews on antiferromagnetic spintronics. Antiferromagnetic dynamics, spin-texures, and nanostructures
arXiv:1705.10377
Abstract
Antiferromagnets as active elements of spintronics can be faster than their ferromagnetic counterparts and more robust to magnetic noise. Owing to the strongly exchange-coupled magnetic sublattice structure, antiferromagnetic order parameter dynamics are qualitatively different and thus capable of engendering novel device functionalities. In this review, we discuss antiferromagnetic textures -- nanoparticles, domain walls, and skyrmions, -- under the action of different spin torques. We contrast the antiferromagnetic and ferromagnetic dynamics, with a focus on the features that can be relevant for applications.
Part of a collection of reviews on antiferromagnetic spintronics
References in corpus (7)
- Spin pumping and spin-transfer torques in antiferromagnets
- Phenomenology of Current-Induced Dynamics in Antiferromagnets
- Observation of spin current in quantum spin liquid
- Propulsion of a domain wall in an antiferromagnet by magnons
- Anti-damping spin transfer torque through epitaxial Nickel oxide
- Ultrafast Switching of Antiferromagnets via Spin-transfer Torque
- Spin-transfer-torque through antiferromagnetic IrMn