CONTROL OF VORTEX STATE IN COBALT NANORINGS WITH DOMAIN WALL PINNING CENTERS

Control of vortex state in cobalt nanorings with domain wall pinning centers

Control of vortex state in cobalt nanorings with domain wall pinning centers

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Magnetic rings at the mesoscopic scale exhibit new spin configuration states and lochby venture pouch switching behavior, which can be controlled via geometrical structure, material composition and applied field.Vortex states in magnetic nanorings ensure flux closure, which is necessary for low stray fields in high packing density in memory devices.We performed magnetoresistance measurements on cobalt nanoring devices and show that by attaching nanowires to cubs foam finger the ring, the vortex state can be stabilized.When a square pad is attached to the free end of the wire, the domain wall nucleation field in the nanowire is reduced.

In addition, the vortex state persists over a larger range of magnetic fields, and exists at all in-plane orientations of the magnetic field.These experimental findings are well supported by our micromagnetic simulations.

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