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Charge identification of fragments produced in ¹⁶O beam interactions at 200 MeV/n and 400 MeV/n on C and C₂H₄ targets

Galati, G. ; Boccia, V. ; Alexandrov, A. ; Alpat, B. ; Ambrosi, G. ; Argirò, S. ; Barbanera, M. ; Bartosik, N. ; Battistoni, G. ; Bisogni, M. G. ; Bruni, G. ; Cavanna, F. ; Cerello, P. ; Ciarrocchi, E. ; Colombi, S. ; De Gregorio, A. ; De Lellis, G. ; Di Crescenzo, A. ; Di Ruzza, B. ; Donetti, M. ; Dong, Y. ; Durante, M. ; Faccini, R. ; Ferrero, V. ; Finck, C. ; Fiorina, E. ; Francesconi, M. ; Franchini, M. ; Franciosini, G. ; Galli, L. ; Ionica, M. ; Iuliano, A. ; Kanxheri, K. ; Kraan, A. C. ; La Tessa, C. ; Lauria, A. ; Torres, E. Lopez ; Magi, M. ; Manna, A. ; Marafini, M. ; Massa, M. ; Massimi, C. ; Mattei, I. ; Mengarelli, A. ; Mereghetti, A. ; Minniti, T. ; Moggi, A. ; Morone, M. C. ; Morrocchi, M. ; Muraro, S. ; Pastrone, N. ; Patera, V. ; Pennazio, F. ; Peverini, F. ; Placidi, P. ; Pullia, M. ; Ramello, L. ; Reidel, C. ; Ridolfi, R. ; Salvi, L. ; Sanelli, C. ; Sarti, A. ; Sato, O. ; Savazzi, S. ; Scavarda, L. ; Schiavi, A. ; Schuy, C. ; Scifoni, E. ; Sciubba, A. ; Servoli, L. ; Silvestre, G. ; Sitta, M. ; Spighi, R. ; Spiriti, E. ; Tioukov, V. ; Tomassini, S. ; Tommasino, F. ; Toppi, M. ; Traini, G. ; Trigilio, A. ; Ubaldi, G. ; Valetti, A. ; Vanstalle, M. ; Villa, M. ; Weber, U. ; Zarrella, R. ; Zoccoli, A. ; Montesi, M. C. (2024)
Charge identification of fragments produced in ¹⁶O beam interactions at 200 MeV/n and 400 MeV/n on C and C₂H₄ targets.
In: Frontiers in Physics, 2024, 11
doi: 10.26083/tuprints-00027146
Article, Secondary publication, Publisher's Version

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Item Type: Article
Type of entry: Secondary publication
Title: Charge identification of fragments produced in ¹⁶O beam interactions at 200 MeV/n and 400 MeV/n on C and C₂H₄ targets
Language: English
Date: 11 June 2024
Place of Publication: Darmstadt
Year of primary publication: 29 January 2024
Place of primary publication: Lausanne
Publisher: Frontiers Media S.A.
Journal or Publication Title: Frontiers in Physics
Volume of the journal: 11
Collation: 14 Seiten
DOI: 10.26083/tuprints-00027146
Corresponding Links:
Origin: Secondary publication DeepGreen
Abstract:

Introduction: Charged Particle Therapy plays a key role in the treatment of deep-seated tumours, because of the advantageous energy deposition culminating in the Bragg peak. However, knowledge of the dose delivered in the entrance channel is limited by the lack of data on the beam and fragmentation of the target.

Methods: The FOOT experiment has been designed to measure the cross sections of the nuclear fragmentation of projectile and target with two different detectors: an electronic setup for the identification of Z ≥ 3 fragments and a nuclear emulsion spectrometer for Z ≤ 3 fragments. In this paper, we analyze the data taken by exposing four nuclear emulsion spectrometers, with C and C₂H₄ targets, to 200 MeV/n and 400 MeV/n oxygen beams at GSI Helmholtzzentrum für Schwerionenforschung (Darmstadt, Germany), and we report the charge identification of produced fragments based on the controlled fading induced on nuclear emulsion films.

Results: The goal of identifying fragments as heavy as lithium has been achieved.

Discussion: The results will contribute to a better understanding of the nuclear fragmentation process in charged particle therapy and have implications for refining treatment planning in the presence of deep-seated tumors.

Uncontrolled Keywords: particle therapy, fragmentation, cross sections, nuclear emulsion detector, protons RBE, charge measurement, hadron therapy
Identification Number: Artikel-ID: 1327202
Status: Publisher's Version
URN: urn:nbn:de:tuda-tuprints-271462
Additional Information:

Sec. Nuclear Physics​

Classification DDC: 500 Science and mathematics > 530 Physics
Divisions: 05 Department of Physics > Institute for Condensed Matter Physics > Biophysics
Date Deposited: 11 Jun 2024 11:48
Last Modified: 13 Jun 2024 09:52
SWORD Depositor: Deep Green
URI: https://tuprints.ulb.tu-darmstadt.de/id/eprint/27146
PPN: 519047834
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