About Energy storage of vortex magnetic field
The free energy associated with the magnetic winding texture is built up in a circular easy-plane magnetic structure by injecting a vorticity flow in the radial direction. The latter is accomplished by electrically induced spin-transfer torque, which pumps energy into the magnetic system in proportion to the vortex flux.
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6 FAQs about [Energy storage of vortex magnetic field]
Can a vortex core polarization be used as a data storage method?
The application of small bursts of an oscillating magnetic field can be used to reverse controllably the gyration direction of a vortex core structure, and hence switch the direction of the out-of-plane vortex core polarization. This raises the possibility of using this core switching scheme as a means of magnetic data storage.
What are magnetic vortices?
Magnetic vortices are topological objects found in magnetic thin films and microstructures. The study of vortices has attracted much attention for their fundamental beauty and because vortices could be constituents of non-volatile storage and sensing devices as well as of radiofrequency and neuro-inspired devices.
What is a magnetic vortex structure?
The magnetic vortex structure can be described as a soliton, exhibiting a curling spin structure in the plane of the magnetization around a central region where magnetic moments are pointing out of plane to avoid creating a singularity.
How does an external magnetic field affect a vortex core?
Fundamentally, the application of an external magnetic field permits a level of control on the restoring potential generated by the Oersted field of the dc current passing perpendicularly through the layers of the device, which in turn allows the trajectory of the vortex core to be controlled. 3.2. Mutual synchronization of STVOs
Could ferromagnetic disks have a magnetic vortex core?
Researchers have also theoretically predicted the remarkable reduction of the required magnetic switching field for a topological magnetic vortex core at a temperature closely below the Curie point (36) and the possibility of all-optical switching of a magnetic vortex core (37) in ferromagnetic disks.
How does a vortex structure react with an alternating magnetic field?
The vortex structure is excited with an alternating magnetic field (frequency 250 MHz, amplitude 0.1 mT). Two sequences (phase steps 90°) of images show the dynamic response of the vortex structure before and after a 4 ns ‘single period’ burst (amplitude 1.5 mT).
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