Field ion microscopy (FIM) allows to image individual surface atoms by exploiting the effect of an intense electric field. Widespread use of atomic resolution imaging by FIM has been hampered by a lack of efficient image processing/data extraction tools. Recent advances in imaging and data mining techniques have renewed the interest in using FIM in conjunction with automated detection of atoms and lattice defects for materials characterization. After a brief overview of existing routines, we review the use of machine learning (ML) approaches for data extraction with the aim to catalyze new data-driven insights into high electrical field physics. Apart from exploring various supervised and unsupervised ML algorithms in this context, we also ...
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...
Work is currently in progress investigating the possibility of imaging large organic and biological ...
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...
An automated procedure has been developed for the reconstruction of field ion microscopy (FIM) data ...
\u3cp\u3eThis article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
The field ion microscope is an instrument that can provide an image of the surface of a metallic sam...
The field ion microscope is an instrument that can provide an image of the surface of a metallic sam...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
The field ion microscope is an instrument that can provide an image of the surface of a metallic sam...
Der Vorgänger der Atomsonden-Tomographie (APT), die Feldionenmikroskopie (FIM) genannt, ist bekannt ...
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...
Work is currently in progress investigating the possibility of imaging large organic and biological ...
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...
An automated procedure has been developed for the reconstruction of field ion microscopy (FIM) data ...
\u3cp\u3eThis article reviews recent advances utilizing field-ion microscopy (FIM) to extract atomic...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
International audienceChemically resolved atomic resolution imaging can give fundamental information...
The field ion microscope is an instrument that can provide an image of the surface of a metallic sam...
The field ion microscope is an instrument that can provide an image of the surface of a metallic sam...
International audienceThis article presents a fast and highly efficient algorithm developed to recon...
The field ion microscope is an instrument that can provide an image of the surface of a metallic sam...
Der Vorgänger der Atomsonden-Tomographie (APT), die Feldionenmikroskopie (FIM) genannt, ist bekannt ...
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...
Work is currently in progress investigating the possibility of imaging large organic and biological ...