The spin Hall effect in a non-magnetic metal with spin–orbit coupling injects transverse spin currents into adjacent magnetic layers, where the resulting spin transfer torque can drive spin wave auto-oscillations. Such spin Hall nano-oscillators (SHNOs) hold great promise as extremely compact and broadband microwave signal generators and magnonic spin wave injectors. Here we show that SHNOs can also be mutually synchronized with unprecedented efficiency. We demonstrate mutual synchronization of up to nine individual SHNOs, each separated by 300 nm. Through further tailoring of the connection regions we can extend the synchronization range to 4 μm. The mutual synchronization is observed electrically as an increase in the power and coherence ...
Spin-torque oscillators (STOs) are capable of producing tunable broadband high-frequency signals wit...
Current-induced self-sustained magnetization oscillations in spin-torque nano-oscillators (STNOs) ar...
© 2015, Nature Publishing Group. All rights reserved. Due to their nonlinear properties, spin transf...
The spin Hall effect in a non-magnetic metal with spin–orbit coupling injects transverse spin curren...
A strategy for a scalable synchronization of an array of spin-Hall oscillators (SHOs) is illustrated...
A strategy for a scalable synchronization of an array of spin-Hall oscillators (SHOs) is illustrated...
Spin-torque oscillators offer a unique combination of nanosize, ultrafast modulation rates and ultra...
Mutual synchronization of N serially connected spintronic nano-oscillators boosts their coherence by...
Spin-torque oscillators offer a unique combination of nanosize, ultrafast modulation rates and ultra...
Spin-torque oscillators (STOs) belong to a novel class of spintronic devices and exhibit a broad ope...
Spin Hall nano-oscillators (SHNOs) are nanoscale spintronic devices that generate microwave signals ...
Spin Hall nano-oscillators (SHNOs) are nanoscale spintronic devices that generate microwave signals ...
Spin Hall nano-oscillators (SHNOs) are nanoscale spintronic devices that generate microwave signals ...
© 2015, Nature Publishing Group. All rights reserved. Due to their nonlinear properties, spin transf...
We demonstrate a novel type of spin Hall nano-oscillators (SHNOs) that allow for efficient tuning of...
Spin-torque oscillators (STOs) are capable of producing tunable broadband high-frequency signals wit...
Current-induced self-sustained magnetization oscillations in spin-torque nano-oscillators (STNOs) ar...
© 2015, Nature Publishing Group. All rights reserved. Due to their nonlinear properties, spin transf...
The spin Hall effect in a non-magnetic metal with spin–orbit coupling injects transverse spin curren...
A strategy for a scalable synchronization of an array of spin-Hall oscillators (SHOs) is illustrated...
A strategy for a scalable synchronization of an array of spin-Hall oscillators (SHOs) is illustrated...
Spin-torque oscillators offer a unique combination of nanosize, ultrafast modulation rates and ultra...
Mutual synchronization of N serially connected spintronic nano-oscillators boosts their coherence by...
Spin-torque oscillators offer a unique combination of nanosize, ultrafast modulation rates and ultra...
Spin-torque oscillators (STOs) belong to a novel class of spintronic devices and exhibit a broad ope...
Spin Hall nano-oscillators (SHNOs) are nanoscale spintronic devices that generate microwave signals ...
Spin Hall nano-oscillators (SHNOs) are nanoscale spintronic devices that generate microwave signals ...
Spin Hall nano-oscillators (SHNOs) are nanoscale spintronic devices that generate microwave signals ...
© 2015, Nature Publishing Group. All rights reserved. Due to their nonlinear properties, spin transf...
We demonstrate a novel type of spin Hall nano-oscillators (SHNOs) that allow for efficient tuning of...
Spin-torque oscillators (STOs) are capable of producing tunable broadband high-frequency signals wit...
Current-induced self-sustained magnetization oscillations in spin-torque nano-oscillators (STNOs) ar...
© 2015, Nature Publishing Group. All rights reserved. Due to their nonlinear properties, spin transf...