Focussed Ion Beam (FIB) milling is a mainstay of nano-scale machining. By manipulating a tightly focussed beam of energetic ions, often gallium (Ga+), FIB can sculpt nanostructures via localised sputtering. This ability to cut solid matter on the nano-scale has revolutionised sample preparation across the life-, earth- and materials sciences. For example FIB is central to microchip prototyping, 3D material analysis, targeted electron microscopy sample extraction and the nanotechnology behind size-dependent material properties. Despite its widespread usage, detailed understanding of the functional consequences of FIB-induced structural damage, intrinsic to the technique, remains elusive. Here, we present nano-scale measurements of three-di...
The ability to prepare ordered arrays of micro/nano sized magnetic elements offers the chance to inv...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beam (FIB) machining promises exciting new possibilities for the study of quantum materi...
Focussed Ion Beam (FIB) milling is a mainstay of nano-scale machining. By manipulating a tightly foc...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
Lattice defects play a key role in determining the properties of crystalline materials. Probing the ...
International audienceSmall ion-irradiation-induced defects can dramatically alter material properti...
International audienceSmall ion-irradiation-induced defects can dramatically alter material properti...
Small ion-irradiation-induced defects can dramatically alter material properties and speed up degrad...
The properties of crystalline materials are dictated by their lattice structure. The periodic arrang...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
The ability to prepare ordered arrays of micro/nano sized magnetic elements offers the chance to inv...
The ability to prepare ordered arrays of micro/nano sized magnetic elements offers the chance to inv...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beam (FIB) machining promises exciting new possibilities for the study of quantum materi...
Focussed Ion Beam (FIB) milling is a mainstay of nano-scale machining. By manipulating a tightly foc...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
Lattice defects play a key role in determining the properties of crystalline materials. Probing the ...
International audienceSmall ion-irradiation-induced defects can dramatically alter material properti...
International audienceSmall ion-irradiation-induced defects can dramatically alter material properti...
Small ion-irradiation-induced defects can dramatically alter material properties and speed up degrad...
The properties of crystalline materials are dictated by their lattice structure. The periodic arrang...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
The ability to prepare ordered arrays of micro/nano sized magnetic elements offers the chance to inv...
The ability to prepare ordered arrays of micro/nano sized magnetic elements offers the chance to inv...
Focused ion beams (FIBs) are versatile tools with cross-disciplinary applications from the physical ...
Focused ion beam (FIB) machining promises exciting new possibilities for the study of quantum materi...