DocumentCode :
2310386
Title :
Overview of the T2K Fine Grained Detector data acquisition at J-Parc
Author :
Amaudruz, Pierre-André ; Retiére, F. ; Bishop, D. ; Oser, S. ; Olchanski, K. ; Pearson, C. ; Ohlmann, C. ; Poutissou, R. ; Lindner, T. ; Braam, N. ; Hasanen, R. ; Poffenberger, P. ; Kirby, B. ; Tanaka, H. ; Henderson, R. ; Karlen, D. ; Zalipska, J. ; Mill
Author_Institution :
Triumf, Vancouver, BC, Canada
fYear :
2009
fDate :
10-15 May 2009
Firstpage :
38
Lastpage :
42
Abstract :
The Fine Grained Detector (FGD) is one of the sub-systems of the T2K experiment at J-PARC. The trajectories of charged particles produced by neutrinos interacting within the FGD will be reconstructed and used to determine the neutrino interaction point and the neutrino energy, together with other detectors. The FGD also provides some particle identification capabilities by measuring energy loss. The FGD consists of 8448 scintillator bars read out by wavelength-shifting fiber coupled to Multi-Pixel Photon Counters (MPPC). The FGD active volume is surrounded by 3 different boards: Frontend Boards (FEB) which use the SCA ASIC (AFTER) for waveform recording, the Crate Master Board (CMB) for local data collection, and the Light Pulser Boards for calibration purposes are surrounding the active volume of the FGD. The data are then sent by optical links to the Data Concentrator Cards (DCC), then by Ethernet link to the back-end computer. The FGD has the capability to generate a trigger which is sent through LVDS links to the main Trigger module. The monitoring of all the on-detector electronics is managed by means of an independent data path using the Midas Slow-Control Bus (MSCB).
Keywords :
calibration; data acquisition; energy loss of particles; high energy physics instrumentation computing; local area networks; neutrino detection; nuclear electronics; scintillation counters; time projection chambers; ASIC; Ethernet link; J-PARC; Midas slow-control bus; T2K fine grained detector; back-end computer; calibration; crate master board; data acquisition; data concentrator cards; detector electronics; energy loss; frontend boards; light pulser boards; multipixel photon counters; neutrino energy; neutrino interaction point; scintillator bars; time projection chambers; trigger module; waveform recording; Application specific integrated circuits; Bars; Data acquisition; Energy loss; Energy measurement; Loss measurement; Neutrino sources; Particle measurements; Radiation detectors; Wavelength measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real Time Conference, 2009. RT '09. 16th IEEE-NPSS
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-4454-0
Type :
conf
DOI :
10.1109/RTC.2009.5321883
Filename :
5321883
Link To Document :
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