Focused electron beam induced deposition (FEBID) is a direct-write nanofabrication technique able to pattern three-dimensional magnetic nanostructures at resolutions comparable to the characteristic magnetic length scales. FEBID is thus a powerful tool for 3D nanomagnetism which enables unique fundamental studies involving complex 3D geometries, as well as nano-prototyping and specialized applications compatible with low throughputs. In this focused review, we discuss recent developments of this technique for applications in 3D nanomagnetism, namely the substantial progress on FEBID computational methods, and new routes followed to tune the magnetic properties of ferromagnetic FEBID materials. We also review a selection of recent works invo...
To increase the efficiency of current electronics, a specific challenge for the next generation of m...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
Media with engineered magnetization are essential building blocks in magnonics, spintronics, and sup...
Focused electron beam induced deposition (FEBID) is a direct-write nanofabrication technique able to...
Focused-electron-beam-induced deposition (FEBID) is the ultimate additive nanofabrica-tion technique...
The fabrication of nanostructures with high resolution and precise control of the deposition site ma...
This article belongs to the Special Issue Novel Magnetic Properties in Curved Geometries.Focused-ele...
We review the current status of the use of focused electron beam induced deposition (FEBID) for the ...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
The fabrication of three-dimensional (3D) nanostructures is of great interest to many areas of nanot...
The fabrication of nanostructures with high resolution and precise control of the deposition site ma...
Currently, magnetic nanostructures are routinely grown by focused electron beam induced deposition (...
Iron nanostructures grown by focused electron beam induced deposition (FEBID) are promising for appl...
The future technological impact of smaller, faster and more efficient spintronic devices compared to...
To increase the efficiency of current electronics, a specific challenge for the next generation of m...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
Media with engineered magnetization are essential building blocks in magnonics, spintronics, and sup...
Focused electron beam induced deposition (FEBID) is a direct-write nanofabrication technique able to...
Focused-electron-beam-induced deposition (FEBID) is the ultimate additive nanofabrica-tion technique...
The fabrication of nanostructures with high resolution and precise control of the deposition site ma...
This article belongs to the Special Issue Novel Magnetic Properties in Curved Geometries.Focused-ele...
We review the current status of the use of focused electron beam induced deposition (FEBID) for the ...
Resumen del trabajo presentado al 14th International Workshop on Magnetism & Superconductivity at th...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
The fabrication of three-dimensional (3D) nanostructures is of great interest to many areas of nanot...
The fabrication of nanostructures with high resolution and precise control of the deposition site ma...
Currently, magnetic nanostructures are routinely grown by focused electron beam induced deposition (...
Iron nanostructures grown by focused electron beam induced deposition (FEBID) are promising for appl...
The future technological impact of smaller, faster and more efficient spintronic devices compared to...
To increase the efficiency of current electronics, a specific challenge for the next generation of m...
Currently, there are few techniques that allow true 3D-printing on the nanoscale. The most promising...
Media with engineered magnetization are essential building blocks in magnonics, spintronics, and sup...