Identification and selection rules of the spin-wave eigen-modes in a normally magnetized nano-pillar
arXiv:1107.5699 · doi:10.1103/PhysRevB.84.224423
Abstract
We report on a spectroscopic study of the spin-wave eigen-modes inside an individual normally magnetized two layers circular nano-pillar (PermalloyCopperPermalloy) by means of a Magnetic Resonance Force Microscope (MRFM). We demonstrate that the observed spin-wave spectrum critically depends on the method of excitation. While the spatially uniform radio-frequency (RF) magnetic field excites only the axially symmetric modes having azimuthal index , the RF current flowing through the nano-pillar, creating a circular RF Oersted field, excites only the modes having azimuthal index . Breaking the axial symmetry of the nano-pillar, either by tilting the bias magnetic field or by making the pillar shape elliptical, mixes different -index symmetries, which can be excited simultaneously by the RF current. Experimental spectra are compared to theoretical prediction using both analytical and numerical calculations. An analysis of the influence of the static and dynamic dipolar coupling between the nano-pillar magnetic layers on the mode spectrum is performed.
References in corpus (15)
- Spin-transfer-driven ferromagnetic resonance of individual nanomagnets
- Electrical detection of spin pumping due to the precessing magnetization of a single ferromagnet
- Coupling efficiency for phase locking of a spin transfer oscillator to a microwave current
- A Frequency-Controlled Magnetic Vortex Memory
- Bistability of vortex core dynamics in a single perpendicularly magnetized nano-disk
- Ferromagnetic resonance force spectroscopy of individual sub-micron size samples
- Phase locking of vortex based spin transfer oscillators to a microwave current
- Time-resolved investigation of magnetization dynamics of arrays of non-ellipsoidal nanomagnets with a non-uniform ground state
- Optimal control of vortex core polarity by resonant microwave pulses
- Magnetization damping in polycrystalline Co ultra-thin films: Evidence for non-local effects
- Spin-torque driven ferromagnetic resonance of Co/Ni synthetic layers in spin valves
- Theory of the spin-torque-driven ferromagnetic resonance in a ferromagnet/normal-metal/ferromagnet structure
- Spin-torque driven ferromagnetic resonance in a nonlinear regime
- Spin torque and waviness in magnetic multilayers: a bridge between Valet-Fert theory and quantum approaches
- Finite size effects on spin-torque driven ferromagnetic resonance in spin-valves with a Co/Ni synthetic free layer
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