Spin-memory loss due to spin-orbit coupling at ferromagnet/heavy-metal interfaces: Ab initio spin-density matrix approach
arXiv:1708.07105 · doi:10.1103/PhysRevB.96.220403
Abstract
Spin-memory loss (SML) of electrons traversing ferromagnetic-metal/heavy-metal (FM/HM), FM/normal-metal (FM/NM) and HM/NM interfaces is a fundamental phenomenon that must be invoked to explain consistently large number of spintronic experiments. However, its strength extracted by fitting experimental data to phenomenological semiclassical theory, which replaces each interface by a fictitious bulk diffusive layer, is poorly understood from a microscopic quantum framework and/or materials properties. Here we describe an ensemble of flowing spin quantum states using spin-density matrix, so that SML is measured like any decoherence process by the decay of its off-diagonal elements or, equivalently, by the reduction of the magnitude of polarization vector. By combining this framework with density functional theory (DFT), we examine how all three components of the polarization vector change at Co/Ta, Co/Pt, Co/Cu, Pt/Cu and Pt/Au interfaces embedded within Cu/FM/HM/Cu vertical heterostructures. In addition, we use ab initio Green's functions to compute spectral functions and spin textures over FM, HM and NM monolayers around these interfaces which quantify interfacial spin-orbit coupling and explain the microscopic origin of SML in long-standing puzzles, such as why it is nonzero at Co/Cu interface; why it is very large at Pt/Cu interface; and why it occurs even in the absence of disorder, intermixing and magnons at the interface.
6 pages, 4 figures, PDFLaTeX; published version
References in corpus (13)
- Non-collinear Magnetoelectronics
- Emergent quantum confinement at topological insulator surfaces
- Interface enhancement of Gilbert damping from first-principles
- Imaging mesoscopic spin Hall flow: Spatial distribution of local spin currents and spin densities in and out of multiterminal spin-orbit coupled semiconductor nanostructures
- Decoherence of transported spin in multichannel spin-orbit coupled spintronic devices: Scattering approach to spin density matrix from the ballistic to the localized regime
- Microscopic Theory of Rashba Interaction in Magnetic Metal
- Theory of unidirectional spin Hall magnetoresistance in heavy-metal/ferromagnetic-metal bilayers
- Intraband and interband spin-orbit torques in non-centrosymmetric ferromagnets
- Spin-orbit torques from interfacial spin-orbit coupling for various interfaces
- Angular dependence of spin-orbit spin transfer torques
- Direct Method for Calculating Temperature-Dependent Transport Properties
- Quantum Mechanics Without State Vectors
- Spin torque and waviness in magnetic multilayers: a bridge between Valet-Fert theory and quantum approaches
Cited by in corpus (14)
- Spin-orbit torques in heavy metal/ferromagnet bilayers with varying strength of interfacial spin-orbit coupling
- Maximizing Spin-Orbit Torque Generated by the Spin Hall Effect of Pt
- 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
- Control of spin-orbit torques by interface engineering in topological insulator heterostructures
- Enhancement of spin transparency by interfacial alloying
- Effects of transition-metal spacers on the spin-orbit torques, spin Hall magnetoresistance, and magnetic anisotropy of Pt/Co bilayers
- Microscopic Origin of Spin-Orbit Torque in Ferromagnetic Heterostructures: A First Principles Approach
- Calculating the spin memory loss at Cumetal interfaces from first principles
- Ultrafast spin dynamics in inhomogeneous systems: a density-matrix approach applied to Co/Cu interfaces
- Spin-memory loss induced by bulk spin-orbit coupling at ferromagnet/heavy-metal interfaces
- Charge-spin interconversion in graphene-based systems from density functional theory
- Calculating interface transport parameters at finite temperatures: Nonmagnetic interfaces