On the origin of magnetization auto-oscillations in constriction-based spin Hall nano-oscillators
arXiv:1702.04155 · doi:10.1103/PhysRevApplied.9.014017
Abstract
We use micromagnetic simulations to map out and compare, the linear and auto-oscillating modes in constriction-based spin Hall nano-oscillators as a function of applied magnetic field with varying magnitude and out-of-plane angle. We demonstrate that for all possible applied field configurations the auto-oscillations emerge from the localized linear modes of the constriction. For field directions tending towards the plane, these modes are of the so-called "edge" type, i.e. localized at the opposite sides of the constriction. When the magnetization direction instead approaches the film normal, the modes transform to the so-called "bulk" type, i.e. localized inside the constriction with substantially increased precession volume, consistent with the re-distribution of the magnetic charges from the sides to the top and bottom surfaces of the constriction. In general, the threshold current of the corresponding auto-oscillations increases with the applied field strength and decreases with its out-of-plane angle, consistent with the behavior of the internal field and in good agreement with a macrospin model. A quantitative agreement is then achieved by taking into account the strongly non-uniform character of the system via a mean-field approximation. Both the Oe field and the spin transfer torque from the drive current increase the localization and decrease the frequency of the observed mode. Furthermore, the anti-symmetric Oe field breaks the lateral symmetry, favoring the localized mode at one of the two constriction edges, in particular for large out-of-plane field angles where the threshold current is significantly increased and the edge demagnetization is suppressed.
8 pages, 7 figures
References in corpus (6)
- Spin Transfer Torques
- Comparison of spin-orbit torques and spin pumping across NiFe/Pt and NiFe/Cu/Pt interfaces
- Current-driven microwave oscillations in current perpendicular-to-plane spin-valve nanopillars
- Stable Magnetic Droplet Solitons in Spin Transfer Nanocontacts
- Angular dependence of spin-orbit spin transfer torques
- Magnetic droplet solitons generated by pure spin currents
Cited by in corpus (39)
- Roadmap on Spin-Wave Computing
- Spin-Orbit-Torque Driven Propagating Spin Waves
- Memristive control of mutual SHNO synchronization for neuromorphic computing
- An Intrinsic Spin Orbit Torque Nano-Oscillator
- Spin-orbit-torque magnonics
- Giant voltage control of spin Hall nano-oscillator damping
- CMOS compatible W/CoFeB/MgO spin Hall nano-oscillators with wide frequency tunability
- Domain wall-based spin-Hall nano-oscillators
- Mapping out the spin-wave modes of constriction-based spin Hall nano-oscillators in weak in-plane fields
- Fabrication of voltage gated spin Hall nano-oscillators
- Energy-efficient WTa/CoFeB/MgO spin Hall nano-oscillators
- Width dependent auto-oscillating properties of constriction based spin Hall nano-oscillators
- Nanoconstriction spin-Hall oscillator with perpendicular magnetic anisotropy
- Spin wave-driven variable-phase mutual synchronization in spin Hall nano-oscillators
- Femtosecond laser pulse driven caustic spin wave beams
- Hybrid spin Hall nano-oscillators based on ferromagnetic metal/ferrimagnetic insulator heterostructures
- Combined frequency and time domain measurements on injection-locked, constriction-based spin Hall nano-oscillators
- Bipolar spin Hall nano-oscillators
- Spatial Mapping of Torques within a Spin Hall Nano-oscillator
- Compositional effect on auto-oscillation behavior of Ni100-xFex/Pt spin Hall nano-oscillators
- Optothermal control of spin Hall nano-oscillators
- Voltage control of frequency, effective damping and threshold current in nano-constriction-based spin Hall nano-oscillators
- Spin-Orbit-Torque-based Devices, Circuits and Architectures
- Free-standing and positionable microwave antenna device for magneto-optical spectroscopy experiments
- Antiferromagnetic Bloch line driven by spin current as room-temperature analog of a fluxon in a long Josephson junction
- Origin of Nonlinear Damping due to Mode Coupling in Auto-Oscillatory Modes Strongly Driven by Spin-Orbit Torque
- A Spin Hall Ising Machine
- Large Non-Volatile Frequency Tuning of Spin Hall Nano-Oscillators using Circular Memristive Nano-Gates
- Ultra-low-current-density single-layer magnetic Weyl semimetal spin Hall nano-oscillators
- Controllable excitation of quasi-linear and bullet modes in a spin-Hall nano-oscillator
- Spin wave excitations in a nanowire spin-torque oscillator with perpendicular magnetic anisotropy
- Effects of delayed feedback on the power spectrum of spin-torque nano-oscillators
- Spin orbit torque nano-oscillators by dipole field-localized spin wave modes
- Mutual synchronization in spin torque and spin Hall nano-oscillators
- Tunable Skyrmion-Antiskyrmion Dynamics in Co/Pt Nanocontacts for Spintronic Applications
- Optimizing Hybrid Ferromagnetic Metal-Ferrimagnetic Insulator Spin-Hall Nano-Oscillators: A Micromagnetic Study
- Frequency Stability of Spin-Hall Nano-Oscillators with Realistic Grain Structure
- Mutual synchronization of constriction-based spin Hall nano-oscillators in weak in-plane fields
- Direct determination of Spin-Orbit torque by using dc current-voltage characteristics