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Performance of the reconstruction algorithms of the FIRST experiment pixel sensors vertex detector

Rescigno, R. (author)
Finck, Ch. (author)
Juliani, D. (author)
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Spiriti, E. (author)
Baudot, J. (author)
Abou-Haidar, Z. (author)
Agodi, C. (author)
Alvarez, M. A. G. (author)
Aumann, T. (author)
Battistoni, G. (author)
Bocci, A. (author)
Böhlen, Till Tobias (author)
Stockholms universitet,Medicinsk strålningsfysik (tills m KI),European Organization for Nuclear Research CERN, Switzerland
Boudard, A. (author)
Brunetti, A. (author)
Carpinelli, M. (author)
Cirrone, G. A. P. (author)
Cortes-Giraldo, M. A. (author)
Cuttone, G. (author)
De Napoli, M. (author)
Durante, M. (author)
Gallardo, M. I. (author)
Golosio, B. (author)
Iarocci, E. (author)
Iazzi, F. (author)
Ickert, G. (author)
Introzzi, R. (author)
Krimmer, J. (author)
Kurz, N. (author)
Labalme, M. (author)
Leifels, Y. (author)
Le Fevre, A. (author)
Leray, S. (author)
Marchetto, F. (author)
Monaco, V. (author)
Morone, M. C. (author)
Oliva, P. (author)
Paoloni, A. (author)
Patera, V. (author)
Piersanti, L. (author)
Pleskac, R. (author)
Quesada, J. M. (author)
Randazzo, N. (author)
Romano, F. (author)
Rossi, D. (author)
Rousseau, M. (author)
Sacchi, R. (author)
Sala, P. (author)
Sarti, A. (author)
Scheidenberger, C. (author)
Schuy, C. (author)
Sciubba, A. (author)
Sfienti, Concettina (author)
Stockholms universitet,Medicinsk strålningsfysik (tills m KI),Istituto Nazionale di Fisica Nucleare - Laboratori Nazionali del Sud, Italy
Simon, H. (author)
Sipala, V. (author)
Tropea, S. (author)
Vanstalle, M. (author)
Younis, H. (author)
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 (creator_code:org_t)
Elsevier BV, 2014
2014
English.
In: Nuclear Instruments and Methods in Physics Research Section A. - : Elsevier BV. - 0168-9002 .- 1872-9576. ; 767, s. 34-40
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Hadrontherapy treatments use charged particles (e.g. protons and carbon ions) to treat tumors. During a therapeutic treatment with carbon ions, the beam undergoes nuclear fragmentation processes giving rise to significant yields of secondary charged particles. An accurate prediction of these production rates is necessary to estimate precisely the dose deposited into the tumours and the surrounding healthy tissues. Nowadays, a limited set of double differential carbon fragmentation cross-section is available. Experimental data are necessary to benchmark Monte Carlo simulations for their use in hadrontherapy. The purpose of the FIRST experiment is to study nuclear fragmentation processes of ions with kinetic energy in the range from 100 to 1000 MeV/u. Tracks are reconstructed using information from a pixel silicon detector based on the CMOS technology. The performances achieved using this device for hadrontherapy purpose are discussed. For each reconstruction step (clustering, tracking and vertexing), different methods are implemented. The algorithm performances and the accuracy on reconstructed observables are evaluated on the basis of simulated and experimental data.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Keyword

CMOS active pixel sensors
Vertex detector
Clustering
Tracking
Vertexing

Publication and Content Type

ref (subject category)
art (subject category)

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