A single layer spin-orbit torque nano-oscillator
Journal article, 2019

Spin torque and spin Hall effect nano-oscillators generate high intensity spin wave auto-oscillations on the nanoscale enabling novel microwave applications in spintronics, magnonics, and neuromorphic computing. For their operation, these devices require externally generated spin currents either from an additional ferromagnetic layer or a material with a high spin Hall angle. Here we demonstrate highly coherent field and current tunable microwave signals from nano-constrictions in single 15-20 nm thick permalloy layers with oxide interfaces. Using a combination of spin torque ferromagnetic resonance measurements, scanning micro-Brillouin light scattering microscopy, and micromagnetic simulations, we identify the auto-oscillations as emanating from a localized edge mode of the nano-constriction driven by spin-orbit torques. Our results pave the way for greatly simplified designs of auto-oscillating nano-magnetic systems only requiring single ferromagnetic layers with oxide interfaces.

Author

Mohammad Haidar

University of Gothenburg

Chalmers, Physics

Ahmad Awad

University of Gothenburg

Mykola Dvornik

University of Gothenburg

Roman Khymyn

University of Gothenburg

Afshin Houshang

University of Gothenburg

Johan Åkerman

University of Gothenburg

Nature Communications

2041-1723 (ISSN) 20411723 (eISSN)

Vol. 10 1 2362

Subject Categories

Other Electrical Engineering, Electronic Engineering, Information Engineering

Condensed Matter Physics

DOI

10.1038/s41467-019-10120-4

PubMed

31142758

More information

Latest update

10/9/2022