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Design and Performance of the Prototype Schwarzschild-Couder Telescope Camera

Authors :
Adams, Colin B.
Ambrosi, Giovanni
Ambrosio, Michelangelo
Aramo, Carla
Arlen, Timothy
Benbow, Wystan
Bertucci, Bruna
Bissaldi, Elisabetta
Biteau, Jonathan
Bitossi, Massimiliano
Boiano, Alfonso
Bonavolontà, Carmela
Bose, Richard
Bouvier, Aurelien
Buscemi, Mario
Brill, Aryeh
Brown, Anthony M.
Buckley, James H.
Canestrari, Rodolfo
Capasso, Massimo
Caprai, Mirco
Coppi, Paolo
Covault, Corbin E.
Depaoli, Davide
Di Venere, Leonardo
Errando, Manel
Fegan, Stephen
Feng, Qi
Fiandrini, Emanuele
Furniss, Amy
Garczarczyk, Markus
Gent, Alasdair
Giglietto, Nicola
Giordano, Francesco
Giro, Enrico
Halliday, Robert
Hervet, Olivier
Hughes, Gareth
Incardona, Simone
Humensky, Thomas B.
Ionica, Maria
Jin, Weidong
Johnson, Caitlin A.
Kieda, David
Krennrich, Frank
Kuznetsov, Andrey
Lapington, Jon
Licciulli, Francesco
Loporchio, Serena
Marsella, Giovanni
Masone, Vincenzo
Meagher, Kevin
Meures, Thomas
Mode, Brent A. W.
Mognet, Samuel A. I.
Mukherjee, Reshmi
Okumura, Akira
Pantaleo, Francesca R.
Paoletti, Riccardo
Di Pierro, Federico
Ribeiro, Deivid
Riitano, Luca
Roache, Emmet
Ross, Duncan
Rousselle, Julien
Rugliancich, Andrea
Santander, Marcos
Schneider, Michael
Schoorlemmer, Harm
Shang, Ruo-Yu
Stevenson, Brandon
Stiaccini, Leonardo
Tajima, Hiroyasu
Taylor, Leslie P.
Thornhill, Julian
Tosti, Luca
Tripodo, Giovanni
Vagelli, Valerio
Valentino, Massimo
Vandenbroucke, Justin
Vassiliev, Vladimir V.
Wakely, Scott P.
Watson, Jason J.
White, Richard
Wilcox, Patrick
Williams, David A.
Wood, Matthew
Yu, Peter
Zink, Adrian
Source :
J. Astron. Telesc. Instrum. Syst. 8(1), 014007 (2022)
Publication Year :
2022

Abstract

The prototype Schwarzschild-Couder Telescope (pSCT) is a candidate for a medium-sized telescope in the Cherenkov Telescope Array. The pSCT is based on a novel dual mirror optics design which reduces the plate scale and allows for the use of silicon photomultipliers as photodetectors. The prototype pSCT camera currently has only the central sector instrumented with 25 camera modules (1600 pixels), providing a 2.68$^{\circ}$ field of view (FoV). The camera electronics are based on custom TARGET (TeV array readout with GSa/s sampling and event trigger) application specific integrated circuits. Field programmable gate arrays sample incoming signals at a gigasample per second. A single backplane provides camera-wide triggers. An upgrade of the pSCT camera is in progress, which will fully populate the focal plane. This will increase the number of pixels to 11,328, the number of backplanes to 9, and the FoV to 8.04$^{\circ}$. Here we give a detailed description of the pSCT camera, including the basic concept, mechanical design, detectors, electronics, current status and first light.

Details

Database :
arXiv
Journal :
J. Astron. Telesc. Instrum. Syst. 8(1), 014007 (2022)
Publication Type :
Report
Accession number :
edsarx.2203.08169
Document Type :
Working Paper
Full Text :
https://doi.org/10.1117/1.JATIS.8.1.014007