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Architecture of the FARCOS detection system and first beam experiments

Authors :
Antonio Trifiro
S. Pirrone
S. De Luca
N. Giudice
Luis Acosta
E. V. Pagano
G. Salemi
F. Favela
M. D'Andrea
V. L. Sicari
Michele Papa
G. Passaro
Andrea Castoldi
Lucrezia Auditore
G. Sacca
L. Quattrocchi
C. Maiolino
G. Politi
T. Parsani
F. Librizzi
F. Fichera
D. Sciliberto
B. Gnoffo
C. Boiano
G. Cardella
G. Lanzalone
S. Maffessanti
E. De Filippo
N. S. Martorana
A. Grimaldi
P. Russotto
F. De Benedetti
F. Rizzo
A. Pagano
Fabio Previdi
M. Trimarchi
S. Norella
Chiara Guazzoni
Source :
2018 IEEE Nuclear Science Symposium and Medical Imaging Conference Proceedings (NSS/MIC).
Publication Year :
2018
Publisher :
IEEE, 2018.

Abstract

The FARCOS (Femtoscope ARray for Correlation and Spectroscopy) collaboration is finally going to instrument the first batch of 10-12 telescopes. They are capable of reconstructing the particle’s momentum with a high degree of precision and of performing correlation measurements of Light Charged Particles (LCPs) and of LCPs and Intermediate Mass Fragments thanks to the very good energy and angular and resolution. Each telescope features a sensitive area of 6.4 × 6.4 cm2 and is composed of three detection stages: two Si layers and a CsI(Tl) calorimeter. The FARCOS cluster modularity allows the arrangement in different configurations, depending on the physics case one wants to address. The final system will be a modular assembly of 20 telescopes. The total number of readout channels for the final FARCOS system is 2560 channels for the silicon layers and 80 channels for the scintillators. In this paper, we focus on the FARCOS basic module and system architecture and illustrate its performance as assessed in test beams in true experimental conditions.

Details

Database :
OpenAIRE
Journal :
2018 IEEE Nuclear Science Symposium and Medical Imaging Conference Proceedings (NSS/MIC)
Accession number :
edsair.doi.dedup.....5d3d7c69617ffd556039e583f52d63e4
Full Text :
https://doi.org/10.1109/nssmic.2018.8824543