CERN Accélérateur de science

CERN Document Server 3 notices trouvées  La recherche a duré 1.44 secondes. 
1.
The DEFT facility: An accelerator for very-high-energy electron FLASH radiotherapy Technical design report / Angoletta, Maria Elena (CERN) ; Bauche, Jeremie (CERN) ; Brunner, Olivier (CERN) ; Calatroni, Sergio (CERN) ; Corsini, Roberto (CERN) ; Cravero, Jean-Marc (CERN) ; Doebert, Steffen (CERN) ; Ferreira Somoza, Jose Antonio (CERN) ; Giordano, Maria Carmen (CERN) ; Granados, Eduardo (CERN) et al.
The design of an accelerator facility capable of delivering FLASH radiotherapy to large, deep-seatedtumours is presented. The facility, called DEFT (Deep Electron Flash Therapy), produces 140 MeVelectrons so is capable of treating tumours located at depths up to 25 cm. [...]
CERN-2025-007.- Geneva : CERN, 2025 - 135 p. CERN Yellow Reports: Monographs, 7/2025 - Published in : 10.23731/CYRM-2025-007 Fulltext: PDF;
2.
Plasma treated metals after H$^-$ irradiation and its effect on vacuum breakdown behaviour / Serafim, C. (CERN ; Helsinki Inst. of Phys.) ; Calatroni, S. (CERN) ; Djurabekova, F. (Helsinki Inst. of Phys.) ; Giordano, M.C. (CERN) ; Himmerlich, M. (CERN) ; Bjelland, V. (CERN ; Norwegian U. Sci. Tech.) ; Kouzios, C. (CERN) ; Pinto, P. Costa (CERN) ; Perez-Fontenla, A.T. (CERN) ; Wuensch, W. (CERN) et al.
Vacuum breakdown in accelerator structures is a critical challenge that occurs under high electric fields. In environments subjected to hydrogen ion irradiation or high beam losses, such as in Radio-Frequency Quadrupoles (RFQ), residual hydrocarbons from the vacuum may result in carbon contamination of the metal surfaces from charged particle induced cracking. [...]
arXiv:2503.17360.- 2025-08-01 - 12 p. - Published in : Phys. Rev. Accel. Beams 28 (2025) 083101 Fulltext: 2503.17360 - PDF; document - PDF;
3.
Plasma Cleaning of Hydrocarbon and Carbon Contaminated Surfaces of Accelerator Components / Giordano, M C (CERN) ; Pinto, P Costa (CERN) ; Henrist, B (CERN) ; Himmerlich, M (CERN) ; Taborelli, M (CERN) ; Thaus, N (CERN) ; Carlino, V (Unlisted, US) ; Fahey, M (Unlisted, US) ; Monteiro, J (Unlisted, US) ; Tran, L (Unlisted, US)
To achieve the vacuum quality required for the operation of particle accelerators, the surface of the vacuum vessels must be clean and free of hydrocarbons. This is usually done by wet chemistry processes, e.g. [...]
2024 - 6 p. - Published in : J. Phys. : Conf. Ser.: 2687 (2024) , no. 8, pp. 082048
- Published in : JACoW IPAC: 2023 (2023) , pp. THPM038 Fulltext: PublicationJACoW - PDF; PublicationIOP - PDF;
In : 14th International Particle Accelerator Conference (IPAC 2023), Venice, Italy, 7 - 12 May 2023, pp.082048

Voir aussi: noms d'auteurs similaires
32 Giordano, M
1 Giordano, M.
1 Giordano, M.C.
4 Giordano, Marco
1 Giordano, Maria Carmen
28 Giordano, Matteo
7 Giordano, Michele
4 Giordano, Mosè
Vous désirez être averti des nouveaux résultats pour cette recherche?
Abonnez-vous à une alerte email personnalisée ou inscrivez-vous via le flux RSS.
Vous n'avez pas trouvé ce que vous avez cherché? Essayez votre requête sur d'autres serveurs:
Giordano, M C dans Amazon
Giordano, M C dans CERN EDMS
Giordano, M C dans CERN Intranet
Giordano, M C dans CiteSeer
Giordano, M C dans Google Books
Giordano, M C dans Google Scholar
Giordano, M C dans Google Web
Giordano, M C dans IEC
Giordano, M C dans IHS
Giordano, M C dans INSPIRE
Giordano, M C dans ISO
Giordano, M C dans KISS Books/Journals
Giordano, M C dans KISS Preprints
Giordano, M C dans NEBIS
Giordano, M C dans SLAC Library Catalog
Giordano, M C dans Scirus