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Vortex dynamics and frequency splitting in vertically coupled nanomagnets.


ABSTRACT: We explored the dynamic response of a vortex core in a circular nanomagnet by manipulating its dipole-dipole interaction with another vortex core confined locally on top of the nanomagnet. A clear frequency splitting is observed corresponding to the gyrofrequencies of the two vortex cores. The peak positions of the two resonance frequencies can be engineered by controlling the magnitude and direction of the external magnetic field. Both experimental and micromagnetic simulations show that the frequency spectra for the combined system is significantly dependent on the chirality of the circular nanomagnet and is asymmetric with respect to the external bias field. We attribute this result to the strong dynamic dipole-dipole interaction between the two vortex cores, which varies with the distance between them. The possibility of having multiple states in a single nanomagnet with vertical coupling could be of interest for magnetoresistive memories.

SUBMITTER: Stebliy ME 

PROVIDER: S-EPMC5430672 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Vortex dynamics and frequency splitting in vertically coupled nanomagnets.

Stebliy M E ME   Jain S S   Kolesnikov A G AG   Ognev A V AV   Samardak A S AS   Davydenko A V AV   Sukovatitcina E V EV   Chebotkevich L A LA   Ding J J   Pearson J J   Khovaylo V V   Novosad V V  

Scientific reports 20170425 1


We explored the dynamic response of a vortex core in a circular nanomagnet by manipulating its dipole-dipole interaction with another vortex core confined locally on top of the nanomagnet. A clear frequency splitting is observed corresponding to the gyrofrequencies of the two vortex cores. The peak positions of the two resonance frequencies can be engineered by controlling the magnitude and direction of the external magnetic field. Both experimental and micromagnetic simulations show that the fr  ...[more]

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