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The tracking detector of the FASER experiment

Authors :
FASER Collaboration
Abreu, Henso
Antel, Claire
Ariga, Akitaka
Ariga, Tomoko
Bernlochner, Florian
Boeckh, Tobias
Boyd, Jamie
Brenner, Lydia
Cadoux, Franck
Casper, David W.
Cavanagh, Charlotte
Chen, Xin
Coccaro, Andrea
Crespo-Lopez, Olivier
Dmitrievsky, Sergey
D'Onofrio, Monica
Dozen, Candan
Ezzat, Abdallah
Favre, Yannick
Fellers, Deion
Feng, Jonathan L.
Ferrere, Didier
Gibson, Stephen
Gonzalez-Sevilla, Sergio
Gornushkin, Yuri
Gwilliam, Carl
Hsu, Shih-Chieh
Hu, Zhen
Iacobucci, Giuseppe
Inada, Tomohiro
Jakobsen, Sune
Kajomovitz, Enrique
Kling, Felix
Kose, Umut
Kuehn, Susanne
Lefebvre, Helena
Levinson, Lorne
Li, Ke
Liu, Jinfeng
Magliocca, Chiara
McFayden, Josh
Milanesio, Matteo
Meehan, Sam
Mladenov, Dimitar
Moretti, Theo
Munker, Magdalena
Nakamura, Mitsuhiro
Nakano, Toshiyuki
Nessi, Marzio
Neuhaus, Friedemann
Nevay, Laurie
Otono, Hidetoshi
Pandini, Carlo
Pang, Hao
Paolozzi, Lorenzo
Petersen, Brian
Pietropaolo, Francesco
Prim, Markus
Queitsch-Maitland, Michaela
Resnati, Filippo
Rizzi, Chiara
Rokujo, Hiroki
Ruiz-Choliz, Elisa
Salfeld-Nebgen, Jakob
Sato, Osamu
Scampoli, Paola
Schmieden, Kristof
Schott, Matthias
Sfyrla, Anna
Shively, Savannah
Spencer, John
Takubo, Yosuke
Tarannum, Noshin
Theiner, Ondrej
Torrence, Eric
Tufanli, Serhan
Vasina, Svetlana
Vormwald, Benedikt
Wang, Di
Source :
Nucl. Instrum. Methods Phys. Res., A 1034 (2022) 166825
Publication Year :
2021

Abstract

FASER is a new experiment designed to search for new light weakly-interacting long-lived particles (LLPs) and study high-energy neutrino interactions in the very forward region of the LHC collisions at CERN. The experimental apparatus is situated 480 m downstream of the ATLAS interaction-point aligned with the beam collision axis. The FASER detector includes four identical tracker stations constructed from silicon microstrip detectors. Three of the tracker stations form a tracking spectrometer, and enable FASER to detect the decay products of LLPs decaying inside the apparatus, whereas the fourth station is used for the neutrino analysis. The spectrometer has been installed in the LHC complex since March 2021, while the fourth station is not yet installed. FASER will start physics data taking when the LHC resumes operation in early 2022. This paper describes the design, construction and testing of the tracking spectrometer, including the associated components such as the mechanics, readout electronics, power supplies and cooling system.

Details

Database :
arXiv
Journal :
Nucl. Instrum. Methods Phys. Res., A 1034 (2022) 166825
Publication Type :
Report
Accession number :
edsarx.2112.01116
Document Type :
Working Paper
Full Text :
https://doi.org/10.1016/j.nima.2022.166825