Maximizing the spin-orbit torque efficiency of Pt/Ti multilayers by optimization of the tradeoff between the intrinsic spin Hall conductivity and carrier lifetime
arXiv:1908.06528 · doi:10.1103/PhysRevApplied.12.051002
Abstract
We report a comprehensive study of the maximization of the spin Hall ratio (θSH) in Pt thin films by the insertion of sub-monolayer layers of Ti to decrease carrier lifetime while minimizing the concurrent reduction in the spin Hall conductivity. We establish that the intrinsic spin Hall conductivity of Pt, while robust against the strain and the moderate interruption of crystal order caused by these insertions, begins to decrease rapidly at high resistivity level because of the shortening carrier lifetime. The unavoidable trade-off between the intrinsic spin Hall conductivity and carrier lifetime sets a practical upper bound of θSH >=0.8 for heterogeneous materials where the crystalline Pt component is the source of the spin Hall effect and the resistivity is increased by shortening carrier lifetime. This work also establishes a very promising spin-Hall metal of [Pt 0.75 nm/Ti 0.2 nm]7/Pt 0.75 nm for energy-efficient, high-endurance spin-orbit torque technologies (e.g., memories, oscillators, and logic) due to its combination of a giant θSH of 0.8, or equivalently a dampinglike spin torque efficiency per unit current density of 0.35, with a relatively low resistivity (90 uOhm cm) and high suitability for practical technology integration.
References in corpus (7)
- Theory of spin Hall magnetoresistance
- Study of Intrinsic Spin Hall Effect and Orbital Hall Effect in 4d- and 5d- Transition Metals
- Spin-orbit torques in heavy metal/ferromagnet bilayers with varying strength of interfacial spin-orbit coupling
- Strong damping-like spin-orbit torque and tunable Dzyaloshinskii-Moriya interaction generated by low-resistivity PdPt alloys
- Nanosecond-timescale low error switching of in-plane magnetic tunnel junctions through dynamic Oersted-field assisted spin-Hall effect
- Enhancement of the Anti-Damping Spin Torque Efficacy of Platinum by Interface Modification
- Enhancing spin-orbit torque by strong interfacial scattering from ultra-thin insertion layers
Cited by in corpus (22)
- Electrical control of magnetism by electric field and current-induced torques
- Maximizing Spin-Orbit Torque Generated by the Spin Hall Effect of Pt
- Spin-orbit torque switching of magnetic tunnel junctions for memory application
- Fully Spin-transparent magnetic interfaces enabled by insertion of a paramagnetic NiO layer
- Switching of Perpendicular Magnetization by Spin-Orbit Torque
- Ultrafast spin-currents and charge conversion at 3d-5d interfaces probed by time-domain terahertz spectroscopy
- Benchmarking of spin-orbit torque switching efficiency in Pt alloys
- Role of Dirac nodal lines and strain on the high spin Hall conductivity of epitaxial IrO2 thin films
- Lack of simple correlation between switching current density and spin-orbit torque efficiency of perpendicularly magnetized spin-current generator/ferromagnet heterostructures
- Origin of Strong Two-Magnon Scattering in Heavy Metal/Ferromagnet/Oxide Heterostructures
- Strong variation of spin-orbit torques with relative spin relaxation rates in ferrimagnets
- Absence of significant spin current generation in Ti/FeCoB bilayers with strong interfacial spin-orbit coupling
- Strong Spin-Orbit Torque Induced by the Intrinsic Spin Hall Effect in Cr1-xPtx
- Interfacial Dzyaloshinskii-Moriya interaction and spin-orbit torque in Au1-xPtx/Co bilayers with varying interfacial spin-orbit coupling
- Large Unidirectional Magnetoresistance in Metallic Heterostructures in the Spin Transfer Torque Regime
- Highly fcc-textured Pt-Al alloy films grown on MgO(001) showing enhanced spin Hall efficiency
- Role of the chiral spin configuration in field-free spin-orbit torque-induced magnetization switching by a locally injected spin current
- Microscopic mechanisms of Strong Electron Scattering and Giant Anomalous Hall Effect in high-Curie-temperature Fe3GaTe2 van der Waals Films
- Linear Enhancement of Spin-Orbit Torques and Absence of Bulk Rashba-Type Spin Splitting in Perpendicularly Magnetized [Pt/Co/W]n Superlattices
- Large Spin-to-Charge Conversion in Ultrathin Gold-Silicon Multilayers
- Angular harmonic Hall voltage and magnetoresistance measurements of Pt/FeCoB and Pt-Ti/FeCoB bilayers for spin Hall conductivity determination
- Generating unconventional spin-orbit torques with patterned phase gradients in tungsten thin films