DocumentCode
2550854
Title
Development of PPDs to detect scintillation light from liquid xenon
Author
Iwamoto, Takuya ; Xue Bai ; Chiba, T. ; Fujii, Yuka ; Haruyama, Tomiyoshi ; Kaneko, Daisuke ; Maki, Atsuto ; Mihara, Satoshi ; Mori, Takayoshi ; Natori, Hiroaki ; Nishiguchi, Hajime ; Ootani, Wataru ; Sawada, Renshi ; Uchiyama, Yusuke
Author_Institution
Univ. of Tokyo, Tokyo, Japan
fYear
2012
fDate
Oct. 27 2012-Nov. 3 2012
Firstpage
1589
Lastpage
1594
Abstract
MEG experiment searches for new physics like SUSY-GUT/SUSY-seesaw through the lepton flavor violating μ → eγ decay. The current MEG experiment utilizes 846 2 inch PMTs in order to detect scintillation light in 900 ℓ liquid xenon gamma-ray calorimeter. R&D of Pixelated Photon Detector (PPD) have been actively performed in many different fields as a new novel silicon photon detector, and we started developing a new type of PPD which is sensitive to liquid xenon scintillation light (175nm wavelength) as one of possible candidates of MEG detector upgrade plan in collaboration with Hamamatsu Photonics. Basic characteristics of these samples such as photon detection efficiency(PDE), gain, dark rate, cross talk, after pulse, pulse rise time/fall time, timing resolution, linearity etc. are being measured in a small setup in PSI with 2 ℓ liquid xenon, refrigerator, and 241Am source. Preliminary result already shows 10% PDE in liquid xenon. These results and further optimization of MPPC parameters as well as possible prototype plan are described here.
Keywords
liquid scintillation detectors; optimisation; particle calorimetry; photodetectors; research and development; silicon radiation detectors; 241Am source; Hamamatsu Photonics; MEG detector upgrade plan; MEG experiment; MPPC parameters; PMT; R&D; SUSY-GUT; SUSY-seesaw; cross talk; dark rate; lepton flavor; liquid xenon gamma-ray calorimeter; liquid xenon scintillation light; muon decay into electron+gamma; new physics; optimization; photon detection efficiency; pixelated photon detector; prototype plan; pulse fall time; pulse rise time; refrigerator; silicon photon detector; timing resolution; wavelength 175 nm;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2012 IEEE
Conference_Location
Anaheim, CA
ISSN
1082-3654
Print_ISBN
978-1-4673-2028-3
Type
conf
DOI
10.1109/NSSMIC.2012.6551379
Filename
6551379
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