Publication | Open Access
Logic Operations Based on Magnetic-Vortex-State Networks
100
Citations
26
References
2012
Year
Logic SynthesisSpintronicsVortex DynamicsFuzzy LogicLogic OperationsQuantum ComputingPhysicsEngineeringUnconventional ComputingComputer ArchitectureFormal MethodsSystems EngineeringComputer EngineeringParallel PolarizationProgrammable Logic ArrayVortex DynamicCoupled Magnetic VorticesOptical Logic Gate
Logic operations based on coupled magnetic vortices were experimentally demonstrated. We utilized a simple chain structure consisting of three physically separated but dipolar-coupled vortex-state Permalloy disks as well as two electrodes for application of the logical inputs. We directly monitored the vortex gyrations in the middle disk, as the logical output, by time-resolved full-field soft X-ray microscopy measurements. By manipulating the relative polarization configurations of both end disks, two different logic operations are programmable: the XOR operation for the parallel polarization and the OR operation for the antiparallel polarization. This work paves the way for new-type programmable logic gates based on the coupled vortex-gyration dynamics achievable in vortex-state networks. The advantages are as follows: a low-power input signal by means of resonant vortex excitation, low-energy dissipation during signal transportation by selection of low-damping materials, and a simple patterned-array structure.
| Year | Citations | |
|---|---|---|
Page 1
Page 1