We study the impact of the magnetic field angle on the oscillation frequency of a nanocontact spin torque oscillator (STO) in magnetic fields up to 2.1 T. A model based on a single nonlinear, nonpropagating spin wave mode is found to explain the experimental data. We observe oscillation frequencies as high as 46 GHz in high magnetic fields applied normal to the film plane, and we are able to extrapolate the maximum expected operating frequency to beyond 65 GHz for in-plane magnetic fields. The STO signal remains surprisingly strong at these conditions, which opens up for possible millimeter-wave applications
We investigate the origin of the experimentally observed varying current-frequency nonlinearity of t...
Spin-torque oscillator (STO) is a promising new technology for the future RF oscillators, which is b...
International audienceWith their very rich static and dynamical properties, magnetic vortex dynamics...
We study the impact of the magnetic field angle on the oscillation frequency of a nanocontact spin t...
The emerging spin torque oscillator (STO) technology is a compelling microwave oscillator with an ex...
The nano-scale spin torque oscillator (STO) is a compelling device for on-chip, highly tunable micro...
We present a comprehensive review of the most recent advances in nanocontact spin torque oscillators...
We describe the possibility of using nano-contact spin-torque oscillators (NC-STOs) as fundamental m...
Spin-torque oscillators (STOs) are capable of producing tunable broadband high-frequency signals wit...
A theory of generation linewidth of a spin-torque oscillator (STO) based on an in-plane magnetized n...
The time domain stability of microwave spin torque oscillators (STOs) has been investigated by syste...
Spin torque and spin Hall effect nano-oscillators generate high intensity spin wave auto-oscillation...
The field of spintronics deals with the use of the spin degree of freedom of the electron and the sp...
International audienceSpin Transfer Nano-Oscillators (STNOs) are promising candidates for telecommun...
We investigate the origin of the experimentally observed varying current-frequency nonlinearity of t...
Spin-torque oscillator (STO) is a promising new technology for the future RF oscillators, which is b...
International audienceWith their very rich static and dynamical properties, magnetic vortex dynamics...
We study the impact of the magnetic field angle on the oscillation frequency of a nanocontact spin t...
The emerging spin torque oscillator (STO) technology is a compelling microwave oscillator with an ex...
The nano-scale spin torque oscillator (STO) is a compelling device for on-chip, highly tunable micro...
We present a comprehensive review of the most recent advances in nanocontact spin torque oscillators...
We describe the possibility of using nano-contact spin-torque oscillators (NC-STOs) as fundamental m...
Spin-torque oscillators (STOs) are capable of producing tunable broadband high-frequency signals wit...
A theory of generation linewidth of a spin-torque oscillator (STO) based on an in-plane magnetized n...
The time domain stability of microwave spin torque oscillators (STOs) has been investigated by syste...
Spin torque and spin Hall effect nano-oscillators generate high intensity spin wave auto-oscillation...
The field of spintronics deals with the use of the spin degree of freedom of the electron and the sp...
International audienceSpin Transfer Nano-Oscillators (STNOs) are promising candidates for telecommun...
We investigate the origin of the experimentally observed varying current-frequency nonlinearity of t...
Spin-torque oscillator (STO) is a promising new technology for the future RF oscillators, which is b...
International audienceWith their very rich static and dynamical properties, magnetic vortex dynamics...