Spin-orbit torque switching of magnetic tunnel junctions for memory application
arXiv:2207.11974 · doi:10.1016/j.jmmm.2022.169692
Abstract
Spin-orbit torques (SOT) provide a versatile tool to manipulate the magnetization of diverse classes of materials and devices using electric currents, leading to novel spintronic memory and computing approaches. In parallel to spin transfer torques (STT), which have emerged as a leading non-volatile memory technologie, SOT broaden the scope of current-induced magnetic switching to applications that run close to the clock speed of the central processing unit and unconventional computing architectures. In this paper, we review the fundamental characteristics of SOT and their use to switch magnetic tunnel junction (MTJ) devices, the elementary unit of the magnetoresistive random access memory (MRAM). In the first part, we illustrate the physical mechanisms that drive the SOT and magnetization reversal in nanoscale structures. In the second part, we focus on the SOT-MTJ cell. We discuss the anatomy of the MTJ in terms of materials and stack development, summarize the figures of merit for SOT switching, review the field-free operation of perpendicularly magnetized MTJs, and present options to combine SOT, STT and voltage-gate assisted switching. In the third part, we consider SOT-MRAMs in the perspective of circuit integration processes, introducing considerations on scaling and performance, as well as macro-design architectures. We thus bridge the fundamental description of SOT-driven magnetization dynamics with an application-oriented perspective, including device and system-level considerations, goals, and challenges.
References in corpus (25)
- Spin Transfer Torques
- Highly efficient and tuneable spin-to-charge conversion through Rashba coupling at oxide interfaces
- Single-shot dynamics of spin-orbit torque and spin transfer torque switching in three-terminal magnetic tunnel junctions
- Hund's rule-driven Dzyaloshinskii-Moriya interaction at 3d-5d interfaces
- Giant orbital Hall effect and orbital-to-spin conversion in 3d, 5d, and 4f metallic heterostructures
- Nanosecond-timescale low error switching of in-plane magnetic tunnel junctions through dynamic Oersted-field assisted spin-Hall effect
- Maximizing Spin-Orbit Torque Generated by the Spin Hall Effect of Pt
- Spin-transfer pulse switching: From the dynamic to the thermally activated regime
- Intrinsic spin currents in ferromagnets
- Orbital Rashba effect in surface oxidized Cu film
- Anomalous spin-orbit torque switching due to field-like torque-assisted domain wall reflection
- Enhancing spin-orbit torque by strong interfacial scattering from ultra-thin insertion layers
- Control of spin-orbit torques by interface engineering in topological insulator heterostructures
- Field-free switching of magnetic tunnel junctions driven by spin-orbit torques at sub-ns timescales
- Time-Domain Studies of Very-Large-Angle Magnetization Dynamics Excited by Spin Transfer Torques
- Interplay of voltage control of magnetic anisotropy, spin transfer torque, and heat in the spin-orbit torque switching in three-terminal magnetic tunnel junctions
- Time-Resolved Studies of the Spin-Transfer Reversal Mechanism in Perpendicularly Magnetized Magnetic Tunnel Junctions
- Efficient Spin-Orbit Torque Switching with Non-Epitaxial Chalcogenide Heterostructures
- Sub-nanosecond spin-torque switching of perpendicular magnetic tunnel junction nanopillars at cryogenic temperatures
- Field-free spin-orbit torque switching in Co/Pt/Co multilayer with mixed magnetic anisotropies
- Real-time Hall-effect detection of current-induced magnetization dynamics in ferrimagnets
- Spin-orbit torque characterization in a nutshell
- Materials Requirements of High-Speed and Low-Power Spin-Orbit-Torque Magnetic Random-Access Memory
- Asymmetric velocity and tilt angle of domain walls induced by spin-orbit torques
- Engineering of Intrinsic Chiral Torques in Magnetic Thin Films Based on the Dzyaloshinskii-Moriya Interaction
Cited by in corpus (3)
- Switching of Perpendicular Magnetization by Spin-Orbit Torque
- Spin-orbit torques and spin Hall magnetoresistance generated by twin-free and amorphous Bi0.9Sb0.1 topological insulator films
- Analysis of ultrafast magnetization switching dynamics in exchange-coupled ferromagnet-ferrimagnet heterostructures