\u3cp\u3eThis article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale three-dimensional images of materials. This capability is not new, as the first atomic-scale reconstructions of features utilizing FIM were demonstrated decades ago. The rise of atom probe tomography, and the application of this latter technique in place of FIM has unfortunately severely limited further FIM development. Currently, the ubiquitous availability of extensive computing power makes it possible to treat and reconstruct FIM data digitally and this development allows the image sequences obtained utilizing FIM to be extremely valuable for many material science and engineering applications. This article demonstrates different app...
Three-dimensional field ion microscopy is a powerful technique to analyze material at a truly atomic...
Three-dimensional atom probe (3DAP) tomography combined with high resolution transmission electron m...
Field ion microscopy (FIM) allows to image individual surface atoms by exploiting the effect of an i...
This article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale th...
This article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale th...
This article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale th...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
An automated procedure has been developed for the reconstruction of field ion microscopy (FIM) data ...
Recent progress in atom probe field ion microscopy (APFIM) and its applications to nanoscale microst...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
The three-dimensional atom probe has changed the way that we carry out materials research. For the f...
Three-dimensional field ion microscopy is a powerful technique to analyze material at a truly atomic...
Three-dimensional atom probe (3DAP) tomography combined with high resolution transmission electron m...
Field ion microscopy (FIM) allows to image individual surface atoms by exploiting the effect of an i...
This article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale th...
This article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale th...
This article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic-scale th...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
An automated procedure has been developed for the reconstruction of field ion microscopy (FIM) data ...
Recent progress in atom probe field ion microscopy (APFIM) and its applications to nanoscale microst...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
The three-dimensional atom probe has changed the way that we carry out materials research. For the f...
Three-dimensional field ion microscopy is a powerful technique to analyze material at a truly atomic...
Three-dimensional atom probe (3DAP) tomography combined with high resolution transmission electron m...
Field ion microscopy (FIM) allows to image individual surface atoms by exploiting the effect of an i...