Flicker and random telegraph noise between gyrotropic and dynamic C-state of a vortex based spin torque nano oscillator

Vortex based spin torque nano oscillators (STVOs) can present more complex dynamics than the spin torque induced gyrotropic (G) motion of the vortex core. The respective dynamic modes and the transition between them can be controlled by experimental parameters such as the applied dc current. An inte...

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Published in:AIP Advances Vol. 11; no. 3; pp. 035042 - 035042-5
Main Authors: Wittrock, Steffen, Talatchian, Philippe, Romera, Miguel, Garcia, Mafalda Jotta, Cyrille, Marie-Claire, Ferreira, Ricardo, Lebrun, Romain, Bortolotti, Paolo, Ebels, Ursula, Grollier, Julie, Cros, Vincent
Format: Journal Article Publication
Language:English
Published: Melville American Institute of Physics 01-03-2021
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Abstract Vortex based spin torque nano oscillators (STVOs) can present more complex dynamics than the spin torque induced gyrotropic (G) motion of the vortex core. The respective dynamic modes and the transition between them can be controlled by experimental parameters such as the applied dc current. An interesting behavior is the stochastic transition from the G-to a dynamic C-state occurring for large current densities. Moreover, the C-state oscillations exhibit a constant active magnetic volume. We present noise measurements in the different dynamic states that allow accessing specific properties of the stochastic transition, such as the characteristic state transition frequency. Furthermore, we confirm, as theoretically predicted, an increase of flicker noise with Idc2 when the oscillation volume remains constant with the current. These results bring insight into the potential optimization of noise properties sought for many potential rf applications with spin torque oscillators. Furthermore, the investigated stochastic characteristics open up new potentialities, for instance in the emerging field of neuromorphic computing schemes.
AbstractList Vortex based spin torque nano oscillators (STVOs) can present more complex dynamics than the spin torque induced gyrotropic (G) motion of the vortex core. The respective dynamic modes and the transition between them can be controlled by experimental parameters such as the applied dc current. An interesting behavior is the stochastic transition from the G-to a dynamic C-state occurring for large current densities. Moreover, the C-state oscillations exhibit a constant active magnetic volume. We present noise measurements in the different dynamic states that allow accessing specific properties of the stochastic transition, such as the characteristic state transition frequency. Furthermore, we confirm, as theoretically predicted, an increase of flicker noise with Idc2 when the oscillation volume remains constant with the current. These results bring insight into the potential optimization of noise properties sought for many potential rf applications with spin torque oscillators. Furthermore, the investigated stochastic characteristics open up new potentialities, for instance in the emerging field of neuromorphic computing schemes.
Author Grollier, Julie
Ferreira, Ricardo
Bortolotti, Paolo
Garcia, Mafalda Jotta
Romera, Miguel
Cros, Vincent
Cyrille, Marie-Claire
Wittrock, Steffen
Talatchian, Philippe
Lebrun, Romain
Ebels, Ursula
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  surname: Ebels
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  organization: University Grenoble Alpes, CEA, INAC-SPINTEC, CNRS, SPINTEC
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  organization: Unité Mixte de Physique CNRS, Thales, University Paris-Saclay
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Issue 3
Keywords Spintorque oscillator
Noise Measurement
Spintronic device
Language English
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Snippet Vortex based spin torque nano oscillators (STVOs) can present more complex dynamics than the spin torque induced gyrotropic (G) motion of the vortex core. The...
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SubjectTerms Flicker
Noise
Noise prediction
Optimization
Oscillators
Physics
Spin dynamics
Torque
Vortices
Title Flicker and random telegraph noise between gyrotropic and dynamic C-state of a vortex based spin torque nano oscillator
URI http://dx.doi.org/10.1063/9.0000197
https://www.proquest.com/docview/2506514570
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Volume 11
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