CERN Accelerating science

CERN Document Server 159 elementer funnet  1 - 10nesteslutt  gå til element: Søket tok 0.62 sekunder. 
1.
Measurement of $^{12}$C Fragmentation Cross Sections on C, O, and H in the Energy Range of Interest for Particle Therapy Applications / Mattei, I ; Alexandrov, A ; Alunni Solestizi, L ; Ambrosi, G ; Argiro, S ; Bartosik, N ; Battistoni, G ; Belcari, N ; Biondi, S ; Bisogni, M G et al.
In a carbon ion treatment the nuclear fragmentation of both target and beam projectiles impacts on the dose released on the tumor and on the surrounding healthy tissues. Carbon ion fragmentation occurring inside the patient body has to be studied in order to take into account this contribution. [...]
2020 - 14 p. - Published in : IEEE Trans. Rad. Plasma Med. Sci. 4 (2020) 269-282
2.
Search for Darkonium in $e^+e^-$ Collisions / BABAR Collaboration
Collider searches for dark sectors, new particles interacting only feebly with ordinary matter, have largely focused on identifying signatures of new mediators, leaving much of dark sector structures unexplored. In particular, the existence of dark matter bound states (darkonia) remains to be investigated. [...]
arXiv:2106.08529; BABAR-PUB-21/002; SLAC-PUB-17608.- 2022-01-11 - 10 p. - Published in : Phys. Rev. Lett. 128 (2022) 021802 Fulltext: PDF;
3.
Ion charge separation with new generation of nuclear emulsion films / Montesi, M.C. (Naples U. ; INFN, Naples) ; Lauria, A. (Naples U. ; INFN, Naples) ; Alexandrov, A. (INFN, Naples ; Naples U. ; Natl. U. Sci. Tech., Moscow ; Lebedev Inst.) ; Solestizi, L. Alunni (INFN, Perugia ; Perugia U.) ; Giovanni, Ambrosi (INFN, Perugia) ; Argirò, S. (Turin U. ; INFN, Turin) ; Diaz, R. (Havana, CEADEN) ; Bartosik, N. (INFN, Turin) ; Battistoni, G. (INFN, Milan) ; Belcari, N. (Pisa U. ; INFN, Pisa) et al.
In hadron therapy, the accelerated ions, interacting with the body of the patient, cause the fragmentation of both projectile and target nuclei. The fragments interact with the human tissues depositing energy both in the entrance channel and in the volume surrounding the tumor. [...]
2019 - 8 p. - Published in : Open Physics 17 (2019) 233-240 Fulltext: PDF;
4.
The FOOT FragmentatiOn Of Target Experiment / Alexandrov, Andrey (INFN, Naples) ; Alpat, Behcet (INFN, Perugia) ; Ambrosi, Giovanni (INFN, Perugia) ; Argirò, Stefano (Turin U. ; INFN, Turin) ; Battistoni, Giuseppe (INFN, Milan) ; Bisogni, Maria Giuseppina (Pisa U. ; INFN, Pisa) ; Belcari, Nicola (Pisa U. ; INFN, Pisa) ; Biondi, Silvia (INFN, Bologna ; Bologna U.) ; Bruni, Graziano (INFN, Bologna) ; Camarlinghi, Niccolò (Pisa U. ; INFN, Pisa) et al.
In proton-therapy clinical practice a constant RBE equal to 1.1 is adopted, regardless of the demonstrated RBE variations, which depends on physical and biological parameters. Among other mechanisms, nuclear interactions might influence the proton-RBE due to secondary heavier particles produced by target fragmentation that can significantly contribute to the total dose: an un-wanted and undetermined increase of normal tissues complications probability may occur. [...]
Geneva : CERN, 2019 - 8 p. - Published in : CERN Proc.: 1 (2019) , pp. 305-312 Fulltext: PDF;
In : 15th International Conference on Nuclear Reaction Mechanisms, Varenna, Italy, 11 - 15 Jun 2018, pp.305-312
5.
Measurement of charged particle yields from therapeutic beams in view of the design of an innovative hadrontherapy dose monitor / Battistoni, G (INFN, Milan) ; Bellini, F (Rome U. ; INFN, Rome) ; Bini, F (U. Rome La Sapienza (main)) ; Collamati, F (Rome U. ; INFN, Rome) ; Collini, F (INFN, Milan) ; De Lucia, E (Frascati) ; Durante, M (Darmstadt, GSI) ; Faccini, R (Rome U. ; INFN, Rome) ; Ferroni, F (Rome U. ; INFN, Rome) ; Frallicciardi, P M (Enrico Fermi Ctr., Rome) et al.
Particle Therapy (PT) is an emerging technique, which makes use of charged particles to efficiently cure different kinds of solid tumors. The high precision in the hadrons dose deposition requires an accurate monitoring to prevent the risk of under-dosage of the cancer region or of over-dosage of healthy tissues. [...]
2015 - Published in : JINST 10 (2015) C02032 IOP Open Access article: PDF;
6.
Measurements of secondary particles emitted by $^{12}$C, $^{4}$He and $^{16}$O ion beams in view of innovative dose profiling technique in Particle Therapy / Rucinski, A (INFN, Rome ; U. Rome La Sapienza (main)) ; Battistoni, G (INFN, Milan) ; Collamati, F (Rome U. ; INFN, Rome) ; De Lucia, E (Frascati) ; Faccini, R (Rome U. ; INFN, Rome) ; Marafini, M (Rome U. ; INFN, Rome) ; Mattei, I (INFN, Milan) ; Muraro, S (INFN, Milan) ; Paramatti, R (INFN, Rome) ; Patera, V (INFN, Rome ; U. Rome La Sapienza (main) ; Enrico Fermi Ctr., Rome) et al.
Geneva : CERN, 2015 Published version from CERN: PDF;
In : 14th International Conference on Nuclear Reaction Mechanisms, Villa Monastero, Varenna, Italy, 15 - 19 Jun 2015, pp.355
7.
Measurement of charged particle yields from PMMA irradiated by a 220 MeV/u12Cbeam / Piersanti, L (Frascati ; U. Rome La Sapienza (main)) ; Bellini, F (Rome U. ; INFN, Rome) ; Bini, FU. Rome La Sapienza (main) ; Collamati, F (Rome U. ; INFN, Rome) ; De Lucia, E (Frascati) ; Durante, M (Darmstadt, GSI) ; Faccini, R (Rome U. ; INFN, Rome) ; Ferroni, F (Rome U. ; INFN, Rome) ; Fiore, S (Rome U.) ; Iarocci, E (Frascati ; U. Rome La Sapienza (main)) et al.
The radiation used in hadrontherapy treatments interacts with the patient body producing secondary particles, either neutral or charged, that can be used for dose and Bragg peak monitoring and to provide a fast feedback on the treatment plans. Recent results obtained from the authors on simplified setups (mono-energetic primary beams interacting with homogeneous tissue like target) have already indicated the correlation that exists between the flux of these secondaries coming from the target (e.g. [...]
2014 - 16. - Published in : Phys. Med. Biol. 59 (2014) 1857-1872
8.
A lead-scintillating fiber calorimeter to increase L3 hermeticity / Basti, G (Rome U.) ; Boucham, A (Annecy, LAPP) ; Camberlin, B (Annecy, LAPP) ; Campanelli, M (ETH, Zurich (main)) ; Cavallari, F (Rome U.) ; Cecchi, C (Geneva U.) ; De Notaristefani, F (Rome III U.) ; Diemoz, M (Rome U.) ; Faccini, R (Rome U.) ; Ferroni, F (Rome U.) et al.
A lead-scintillating fiber calorimeter has been built to fill the gap between endcap and barrel of the L3 BGO electromagnetic calorimeter. We report details of the construction, as well as results from test-beam and simulation..
1997 - 3 p. - Published in : Nucl. Phys. B, Proc. Suppl. B 54 (1997) 210-213
In : 6th Topical Seminar on Experimental Apparatus for Particle Physics and Astrophysics, San Miniato, Italy, 20 - 24 May 1996, pp.210-213
9.
Low Energy Nuclear Reactions? / Polosa, A.D. (speaker) (Dip. Fisica, Sapienza Universita di Roma) ; Faccini, R. (speaker) (Dip. Fisica, Sapienza Universita di Roma)
After an introduction to the controversial problem of Low Energy Nuclear Reactions (LENR) catalyzed by neutrons on metallic hydride surfaces we present the results of an experiment, made in collaboration with ENEA Labs in Frascati, to search neutrons from plasma discharges in electrolytic cells. The negative outcome of our experiment goes in the direction of ruling out those theoretical models expecting LENR to occur in condensed matter systems under specific conditions. Our criticism on the theoretical foundations of such models will also be presented.
2014 - 4010. CERN Colloquium External link: Event details In : Low Energy Nuclear Reactions?
10.
Extended calibration range for prompt photon emission in ion beam irradiation / Bellini, F. (Rome U. ; INFN, Rome) ; Boehlen, T.T. (CERN) ; Chin, M.P.W. (CERN) ; Collamati, F. (INFN, Rome ; Rome U.) ; De Lucia, E. (Frascati) ; Faccini, R. (INFN, Rome ; Rome U.) ; Ferrari, A. (CERN) ; Lanza, L. (INFN, Rome ; Rome U.) ; Mancini-Terraciano, C. (Rome III U. ; CERN) ; Marafini, M. (Enrico Fermi Ctr., Rome ; INFN, Rome) et al.
Monitoring the dose delivered during proton and carbon ion therapy is still a matter of research. Among the possible solutions, several exploit the measurement of the single photon emission from nuclear decays induced by the irradiation. [...]
arXiv:1307.5689.- 2014-05-01 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 745 (2014) 114-118 Elsevier Open Access article: PDF; Fulltext: PDF; External link: Preprint

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