Geant4 simulations of soft proton scattering in X-ray optics. A tentative validation using laboratory measurements
Valentina Fioretti, Teresa Mineo, Andrea Bulgarelli, Paolo Dondero,, Vladimir Ivanchenko, Fan Lei, Simone Lotti, Claudio Macculi, Alfonso Mantero, (for the AREMBES collaboration)

TL;DR
This study implements and tests proton scattering models in Geant4 to evaluate their accuracy against laboratory data, aiming to improve predictions of proton-induced background in X-ray space telescopes like ATHENA.
Contribution
The paper introduces the implementation of the Remizovich scattering model in Geant4 and compares it with existing models using laboratory measurements for the first time.
Findings
Single scattering better reproduces scattering efficiency.
Multiple scattering overestimates scattering angles.
Energy loss in simulations is lower than experimental data.
Abstract
Low energy protons (< 300 keV) can enter the field of view of X-ray space telescopes, scatter at small incident angles, and deposit energy on the detector, causing intense background flares at the focal plane or in the most extreme cases, damaging the X-ray detector. A correct modelization of the physics process responsible for the grazing angle scattering processes is mandatory to evaluate the impact of such events on the performance of future X-ray telescopes as the ESA ATHENA mission. For the first time the Remizovich model, in the approximation of no energy losses, is implemented top of the Geant4 release 10.2. Both the new scattering physics and the built-in Coulomb scattering are used to reproduce the latest experimental results on grazing angle proton scattering. At 250 keV multiple scattering delivers large proton angles and it is not consistent with the observation. Among the…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · X-ray Spectroscopy and Fluorescence Analysis · Particle Detector Development and Performance
