Non-white frequency noise in spin torque oscillators and its effect on spectral linewidth
arXiv:1005.5372 · doi:10.1103/PhysRevB.82.054416
Abstract
We measure the power spectral density of frequency fluctuations in nanocontact spin torque oscillators over time scales up to 50 ms. We use a mixer to convert oscillator signals ranging from 10 GHz to 40 GHz into a band near 70 MHz before digitizing the time domain waveform. We analyze the waveform using both zero crossing time stamps and a sliding Fourier transform, discuss the different limitations and advantages of these two methods, and combine them to obtain a frequency noise spectrum spanning more than five decades of Fourier frequency . For devices having a free layer consisting of either a single NiFe layer or a Co/Ni multilayer we find a frequency noise spectrum that is white at large and varies as \emph{} at small . The crossover frequency ranges from $\approx\unit[10^{4}]{Hz}$ to $\approx\unit[10^{6}]{Hz}$ and the component is stronger in the multilayer devices. Through actual and simulated spectrum analyzer measurements, we show that frequency noise causes both broadening and a change in shape of the oscillator's spectral line as measurement time increases. Our results indicate that the long term stability of spin torque oscillators cannot be accurately predicted from models based on thermal (white) noise sources.
References in corpus (9)
- Spin Transfer Torques
- Generation linewidth of an auto-oscillator with a nonlinear frequency shift: Spin-torque nano-oscillator
- Spin Transfer Dynamics in Spin Valves with Out-of-plane Magnetized CoNi Free Layers
- Lineshape distortion in a nonlinear auto-oscillator near generation threshold: Application to spin-torque nano-oscillators
- Time domain measurement of phase noise in a spin torque oscillator
- Microwave power generated by a spin-torque oscillator in the presence of noise
- Temperature dependence of nonlinear auto-oscillator linewidths: Application to spin-torque nano-oscillators
- Experimental Test of Analytic Theory of Spin Torque Oscillator Dynamics
- Amplitude-Phase Coupling in a Spin-Torque Nano-Oscillator
Cited by in corpus (17)
- Reservoir computing with the frequency, phase and amplitude of spin-torque nano-oscillators
- Experimental demonstration of a rapid sweep-tuned spectrum analyzer with temporal resolution based on a spin-torque nano-oscillator
- Origin of spectral purity and tuning sensitivity in a vortex-based spin transfer nano-oscillator
- Generation linewidth of mode-hopping spin torque oscillators
- Nonlinear behavior and mode coupling in spin transfer nano-oscillators
- Parallel pumping of magnetic vortex gyrations in spin-torque nano-oscillators
- Temperature dependence of linewidth in nano-contact based spin torque oscillators: effect of multiple oscillatory modes
- Temperature dependence of microwave voltage emission associated to spin-transfer induced vortex oscillation in magnetic tunnel junction
- Magnetic Droplet Solitons
- Comprehensive and Macrospin-Based Magnetic Tunnel Junction Spin Torque Oscillator Model - Part I: Analytical Model of the MTJ STO
- Super-harmonic injection locking of nano-contact spin-torque vortex oscillators
- Low offset frequency flicker noise in spin torque vortex oscillators
- Time-domain stability of parametric synchronization in a spin-torque nano-oscillator based on a magnetic tunnel junction
- Influence of flicker noise and nonlinearity on the frequency spectrum of spin torque nano-oscillators
- Phase noise analysis of mutually synchronized spin Hall nano-oscillators
- Flicker and random telegraph noise between gyrotropic and dynamic C-state of a vortex based spin torque nano oscillator
- Energy-efficient spin Hall nano-oscillators using near-compensated CoGd ferrimagnets