Ga+ Focused Ion Beam Induced Deposition (FIBID) is a highly flexible, single-step nanopatterning technique that makes use of a focused beam of Ga+ ions to locally induce the decomposition of a gaseous precursor material. In combination with the W(CO)6 precursor, Ga+ FIBID is known to yield a W–C compound that is superconducting below 4.7 K. While most reports on Ga+ FIBID-grown W–C focus on in-plane patterning, we demonstrate here that growth along the vertical direction may also be achieved by successively stacking a series of individual patterns that get deposited on top of each other. The nanopillars obtained following this procedure reach up to 10 μm in height, and have an aspect ratio of around 50. They exhibit a 68% of metallic W in...
Currently, the patterning of innovative three-dimensional (3D) nano-objects is required for the deve...
Techniques for scalable fabrication of one-dimensional or quasi-one-dimensional nanowires are of gre...
We report transport measurements of superconducting amorphous W-based nanodeposits fabricated by foc...
Ga+ Focused Ion Beam Induced Deposition (FIBID) is a highly flexible, single-step nanopatterning tec...
Focused ion beam induced deposition (FIBID) is a nanopatterning technique that uses a focused beam o...
[EN] The usage of focused beams of ions (FIBs) to induce the deposition of different materials repre...
Since its discovery in 1911, superconductivity has represented an equally inciting and fascinating f...
An ultra-fast method to directly grow metallic micro- and nano-structures is introduced. It relies o...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Resumen del trabajo presentado a la 44th Micro and Nano Engineering Conference (MNE), celebrada en C...
We report efficient vortex pinning in thickness-modulated tungsten–carbon-based (W–C) nanostructures...
This article belongs to the Special Issue Nanoscale Assembly and Integration for Applications.Focuse...
Novel physical properties appear when the size of a superconductor is reduced to the nanoscale, in t...
Novel physical properties appear when the size of a superconductor is reduced to the nanoscale, in t...
The critical current of a superconducting nanostructure can be suppressed by applying an electric fi...
Currently, the patterning of innovative three-dimensional (3D) nano-objects is required for the deve...
Techniques for scalable fabrication of one-dimensional or quasi-one-dimensional nanowires are of gre...
We report transport measurements of superconducting amorphous W-based nanodeposits fabricated by foc...
Ga+ Focused Ion Beam Induced Deposition (FIBID) is a highly flexible, single-step nanopatterning tec...
Focused ion beam induced deposition (FIBID) is a nanopatterning technique that uses a focused beam o...
[EN] The usage of focused beams of ions (FIBs) to induce the deposition of different materials repre...
Since its discovery in 1911, superconductivity has represented an equally inciting and fascinating f...
An ultra-fast method to directly grow metallic micro- and nano-structures is introduced. It relies o...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Resumen del trabajo presentado a la 44th Micro and Nano Engineering Conference (MNE), celebrada en C...
We report efficient vortex pinning in thickness-modulated tungsten–carbon-based (W–C) nanostructures...
This article belongs to the Special Issue Nanoscale Assembly and Integration for Applications.Focuse...
Novel physical properties appear when the size of a superconductor is reduced to the nanoscale, in t...
Novel physical properties appear when the size of a superconductor is reduced to the nanoscale, in t...
The critical current of a superconducting nanostructure can be suppressed by applying an electric fi...
Currently, the patterning of innovative three-dimensional (3D) nano-objects is required for the deve...
Techniques for scalable fabrication of one-dimensional or quasi-one-dimensional nanowires are of gre...
We report transport measurements of superconducting amorphous W-based nanodeposits fabricated by foc...