An overview of physical investigations of cultural heritage samples using ion and laser beams performed in the frame of the international collaboration between the University of Messina (Italy) and the Nuclear Physics Institute-ASCR (Czech Republic) is presented. Solid samples are analysed in high vacuum using particle induced X-ray emission, Rutherford backscattering spectrometry, elastic recoil detection analysis, prompt γ activation analysis, nuclear reaction analysis, laser ablation, mass spectrometry, scanning electron microscopy, and many more. The elemental composition of the sample, the trace elements, the depth profiles, the morphology and the comparison between samples and references are reported. Both electron and ion microbeams ...
Geological specimens are often complex materials that require different analytical methods for their...
The combination of particle-induced X-ray emission (PIXE) and Rutherford backscattering (RBS) is par...
Analytical techniques play a fundamental role in heritage science. Among them, Particle Induced X-ra...
Beams of ions from electrostatic accelerators have long been used by curators, conservators, and arc...
The University of Liège has more than twenty years of experience in the use of ion beam analysis tec...
Ion beam techniques have been developed for non destructive characterization of the Mexican cultural...
Summarization: Ion beam techniques are widely used for the nondestructive analysis of objects of art...
For nearly figteen years, the Centre for Research and Restoration of the Museums of France uses a pa...
The application of IBA to cultural heritage mostly relies on the use of PIXE because of its high sen...
Ion beam techniques are used with ion energies from eV to many MeV and a very wide range of ion spec...
This paper introduces the first use of laser-generated proton beams as diagnostic for materials of i...
Analytical methods based on particle accelerators are widely used in cultural heritage diagnostics a...
Geological specimens are often complex materials that require different analytical methods for their...
Cultural Heritage is part of our everyday life and its conservation is extremely important not only ...
Geological specimens are often complex materials that require different analytical methods for their...
Geological specimens are often complex materials that require different analytical methods for their...
The combination of particle-induced X-ray emission (PIXE) and Rutherford backscattering (RBS) is par...
Analytical techniques play a fundamental role in heritage science. Among them, Particle Induced X-ra...
Beams of ions from electrostatic accelerators have long been used by curators, conservators, and arc...
The University of Liège has more than twenty years of experience in the use of ion beam analysis tec...
Ion beam techniques have been developed for non destructive characterization of the Mexican cultural...
Summarization: Ion beam techniques are widely used for the nondestructive analysis of objects of art...
For nearly figteen years, the Centre for Research and Restoration of the Museums of France uses a pa...
The application of IBA to cultural heritage mostly relies on the use of PIXE because of its high sen...
Ion beam techniques are used with ion energies from eV to many MeV and a very wide range of ion spec...
This paper introduces the first use of laser-generated proton beams as diagnostic for materials of i...
Analytical methods based on particle accelerators are widely used in cultural heritage diagnostics a...
Geological specimens are often complex materials that require different analytical methods for their...
Cultural Heritage is part of our everyday life and its conservation is extremely important not only ...
Geological specimens are often complex materials that require different analytical methods for their...
Geological specimens are often complex materials that require different analytical methods for their...
The combination of particle-induced X-ray emission (PIXE) and Rutherford backscattering (RBS) is par...
Analytical techniques play a fundamental role in heritage science. Among them, Particle Induced X-ra...