Three-dimensional (3D) nanomagnetic devices such as the vertical racetrack memory have attracted a huge interest due to their potential for memory and logic applications. However, their implementation has not been realised due to great challenges regarding fabrication and characterisation of 3D nanostructures. Here, we show a 3D nanomagnetic system created by 3D nano-printing and physical vapour deposition, which acts a conduit for domain walls. Domains formed at the substrate level are injected into a 3D nanowire, where they are controllably trapped using vectorial magnetic fields. A dark-field magneto-optical method for parallel, independent measurement of different regions in individual 3D nanostructures is also demonstrated. This work o...
Extending spintronics to the third dimension is regarded as one of the promising alternatives to mee...
The fundamental limits currently faced by traditional computing devices necessitate the exploration ...
Ferromagnetic materials have been utilized as recording media in data storage devices for many decad...
Three-dimensional (3D) nanomagnetic devices such as the vertical racetrack memory have attracted a h...
Three-dimensional (3D) nanomagnetic devices are attracting significant interest due to their potenti...
Three-dimensional (3D) nanomagnetic devices are attracting significant interest due to their potenti...
Three-dimensional (3D) nanomagnetic devices are attracting significant interest due to their potenti...
Three-dimensional magnetic nanostructures hold great potential to revolutionize information technolo...
Three-dimensional magnetic nanostructures hold great potential to revolutionize information technolo...
Three-dimensional magnetic nanostructures hold great potential to revolutionize information technolo...
Three-dimensional (3D) spintronic devices are attracting significant research interest due to their ...
Three-dimensional (3D) spintronic devices are attracting significant research interest due to their ...
The fundamental limits currently faced by traditional computing devices necessitate the exploration ...
Extending spintronics to the third dimension is regarded as one of the promising alternatives to mee...
The fundamental limits currently faced by traditional computing devices necessitate the exploration ...
Ferromagnetic materials have been utilized as recording media in data storage devices for many decad...
Three-dimensional (3D) nanomagnetic devices such as the vertical racetrack memory have attracted a h...
Three-dimensional (3D) nanomagnetic devices are attracting significant interest due to their potenti...
Three-dimensional (3D) nanomagnetic devices are attracting significant interest due to their potenti...
Three-dimensional (3D) nanomagnetic devices are attracting significant interest due to their potenti...
Three-dimensional magnetic nanostructures hold great potential to revolutionize information technolo...
Three-dimensional magnetic nanostructures hold great potential to revolutionize information technolo...
Three-dimensional magnetic nanostructures hold great potential to revolutionize information technolo...
Three-dimensional (3D) spintronic devices are attracting significant research interest due to their ...
Three-dimensional (3D) spintronic devices are attracting significant research interest due to their ...
The fundamental limits currently faced by traditional computing devices necessitate the exploration ...
Extending spintronics to the third dimension is regarded as one of the promising alternatives to mee...
The fundamental limits currently faced by traditional computing devices necessitate the exploration ...
Ferromagnetic materials have been utilized as recording media in data storage devices for many decad...