Publication | Open Access
Magnetic‐Pole Flip by Millimeter Wave
59
Citations
34
References
2020
Year
EngineeringMagnetic ResonanceEducationSpin WavesMagnetic SensorMagnetismMagnetic RecordingsMagnetic Data StorageInformation StorageMagnetohydrodynamicsComputational ElectromagneticsInstrumentationElectrical EngineeringPhysicsMillimetre Wave SystemsMagnetic MeasurementMillimeter Wave TechnologyMicrowave EngineeringMagnetic MediumSpintronicsFocused MillimeterMillimeter WaveApplied PhysicsMagnetic DeviceBig Data
In the era of Big Data and the Internet of Things, data archiving is a key technology. From this viewpoint, magnetic recordings are drawing attention because they guarantee long-term data storage. To archive an enormous amount of data, further increase of the recording density is necessary. Herein a new magnetic recording methodology, "focused-millimeter-wave-assisted magnetic recording (F-MIMR)," is proposed. To test this methodology, magnetic films based on epsilon iron oxide nanoparticles are prepared and a focused-millimeter-wave generator is constructed using terahertz (THz) light. Irradiating the focused millimeter wave to epsilon iron oxide instantly switches its magnetic pole direction. The spin dynamics of F-MIMR are also calculated using the stochastic Landau-Lifshitz-Gilbert model considering all of the spins in an epsilon iron oxide nanoparticle. In F-MIMR, the heat-up effect of the recording media is expected to be suppressed. Thus, F-MIMR can be applied to high-density magnetic recordings.
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