DocumentCode :
1126192
Title :
The Development of the New Data Acquisition System Without Hardware Trigger for the Super-Kamiokande Experiment
Author :
Yamada, Satoru ; Hayato, Yoshinari ; Obayashi, Yoshihisa ; Shiozawa, Masato
Author_Institution :
Inst. for Cosmic Ray Res., Univ. of Tokyo, Gifu
Volume :
55
Issue :
2
fYear :
2008
fDate :
4/1/2008 12:00:00 AM
Firstpage :
683
Lastpage :
686
Abstract :
An online system of the underground neutrino detector, Super-Kamiokande is scheduled to be upgraded in 2008 together with front-end electronics. This detector consists of 50 000 tons of pure water equipped with about 13 000 photo-multipliers (PMTs) to detect Cherenkov light. The new online system is required to accept the dataflow of up to 800 MB/s from the front-end electronics and process them for the offline analysis. We will utilize a Gigabit Ethernet network and parallel data processing to handle this large amount of flow. In the new data acquisition scheme, we will not use a hardware event-trigger but read out every hit data from the front-end electronics and process them by the online farm. Therefore, there is no threshold of the number of PMT hits and the detector will become more sensitive to important cosmic-ray events such as relic neutrino from supernova and low energy solar neutrino. In addition to that, a dead-timeless system is desirable for the continuous measurement 365 days a year. In this paper, the detailed design of the upgraded online system and testing activities using prototypes will be described.
Keywords :
Cherenkov counters; cosmic ray apparatus; data acquisition; nuclear electronics; photomultipliers; Cherenkov light detector; Gigabit Ethernet network; Super-Kamiokande experiment; data acquisition system; front-end electronics; low energy solar neutrino; parallel data processing; photomultipliers; supernova relic neutrino; underground neutrino detector; Atmospheric measurements; Current measurement; Data acquisition; Detectors; Energy measurement; Ethernet networks; Hardware; Neutrino sources; Physics; System testing; Data acquisition; Gigabit Ethernet; dead-timeless; event-building; neutrinos;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2008.918520
Filename :
4484246
Link To Document :
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