An original method has been developed to measure the lateral straggling of sub-micron proton and alpha beams after passing through polymer foils of different thickness. For this purpose, the microbeam line at CENBG has been used in scanning transmission ion microscopy (STIM) configuration to deliver the ions in normal incidence on foils. The lateral spreading of the beam was measured using a collimated charged particle detector centred on the beam axis and placed 6.3 mm behind the foil. When the beam was horizontally scanned in front of the collimator, its lateral distribution was measured step by step detecting particles passing trough the small aperture. Regular gaussian shapes were obtained and data were compared to the result of simulations carried out using the SRIM Monte-Carlo code for 2.5 MeV protons and alphas in Mylar and Formvar thin films.
A single event facility is currently under development at CENBG for applications in radiation biology. The aim is to induce the response of living cells by hitting selected individual specimens or specific sub-cellular compartments with an exact number of light ions. In order to avoid the construction of a complete beam line, it was decided to adapt the existing microprobe system. The line has been equipped with a removable final irradiation stage constituting a versatile system working on demand either in external beam mode or classical analysis under vacuum. The beam blanking is ensured by particle detectors which have been specifically designed to control MeV proton or alpha beams in a single event mode. This paper presents the overall experimental setup and first in-air experimental tests.