Charged particle's flux measurement from PMMA irradiated by 80 MeV/u carbon ion beam
C. Agodi, G. Battistoni, F. Bellini, G. A. P. Cirrone, F. Collamati,, G. Cuttone, E. De Lucia, M. De Napoli, A. Di Domenico, R. Faccini, F., Ferroni, S. Fiore, P. Gauzzi, E. Iarocci, M. Marafini, I. Mattei, S. Muraro,, A. Paoloni, V. Patera, L. Piersanti, F. Romano, A. Sarti

TL;DR
This study measures secondary charged particle fluxes produced by 80 MeV/u carbon ion beams in PMMA, providing data crucial for improving dose monitoring techniques in hadrontherapy and enhancing Monte Carlo simulation accuracy.
Contribution
It presents the first detailed measurement of secondary charged particle fluxes and emission regions from carbon ion interactions with PMMA, aiding in dose monitoring and treatment precision.
Findings
Reconstructed emission region follows Bragg peak movement
Achieved submillimeter accuracy in Bragg peak determination
Measured proton production rate at specified energy and angle
Abstract
Hadrontherapy is an emerging technique in cancer therapy that uses beams of charged particles. To meet the improved capability of hadrontherapy in matching the dose release with the cancer position, new dose monitoring techniques need to be developed and introduced into clinical use. The measurement of the fluxes of the secondary particles produced by the hadron beam is of fundamental importance in the design of any dose monitoring device and is eagerly needed to tune Monte Carlo simulations. We report the measurements done with charged secondary particles produced from the interaction of a 80 MeV/u fully stripped carbon ion beam at the INFN Laboratori Nazionali del Sud, Catania, with a Poly-methyl methacrylate target. Charged secondary particles, produced at 90 with respect to the beam axis, have been tracked with a drift chamber, while their energy and time of flight has been…
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