2002, Article, Boiling heat transfer characteristics of liquid xenon, , Adv. Cryog. Eng.
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2001, PSI Annual report, MUEGAMMA Prototype Timing Counter Tests, , PSI Annual Report 01
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2003, Article, Development of a Liquid Xenon Photon Detector -Toward the Search for a Muon Rare Decay Mode at Paul Scherrer Institut-, , Cryogenics Engineering(in Japanese)
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2002, PSI Annual report, Liquid Xenon Purification Studies for the MEG (mu-->e gamma) Photon Calorimeter, , PSI Annual Report 02
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2002, PSI Annual report, Beam Line Studies for the MEG Experiment (mu --> e gamma), , PSI Annual Report 02
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2003, Article, Capacitive level meter for liquid rare gases, , Cryogenics
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2004, Article, Development of a liquid-xenon photon detector towards the search for a muon rare decay mode at Paul Scherrer Institute, , Cryogenics
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2004, Article, MEG goes in search of the forbidden, , CERN Courier
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2004, Article, Absorption of Scintillation Light in a 100L Liquid Xenon Gamma Ray Detector and Expected Detector Performance, , physics/0407033
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2004, Article, Liquid Xe scintillation calorimetry and Xe optical properties, , physics/0401072
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2005, Article, Absorption of scintillation light in a 100 L liquid xenon gamma-ray detector and expected detector performance, , NIMA
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2005, Article, Development of a Method for Liquid Xenon Purification Using a Cryogenic Centrifugal Pump, , TEION KOGAKU (J. Cryo. Soc. Jpn.) , in Japanese
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2006, Article, Development of a Method for Liquid Xenon Purification Using a Cryogenic Centrifugal Pump, , Cryogenics
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2006, Article, Liquid xenon scintillation calorimetry and Xe optical properties, , Dielectrics and Electrical Insulation, IEEE Transactions on
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2006, Article, A radioactive point-source lattice for calibrating and monitoring the liquid xenon calorimeter of the MEG experiment, , NIMA
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2006, Article, A cryogenic facility for testing the PMTs of the MEG liquid xenon calorimeter., , Nucl.Instrum.Meth.
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Abstract
We built and operated a cryogenic facility for testing in liquid xenon the photomultipliers (PMTs) to be used in the electromagnetic calorimeter of the MEG experiment. In this paper we describe the working principle of the facility and we report on the characteristics measured for some PMTs.
Keywords: Photomultipliers; Calibration; Liquid xenon; Calorimeters; Scintillation light, detectors, cryogenic detectors
PACS classification codes: 85.60.Ha; 06.20.Fn; 07.20.Mc; 07.20.Fw; 29.40.Mc |
2006, Article, Performance of the Domino Ring Sampler in the MAGIC experiment, , Nucl. Instrum. Meth.
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2009, Article, Development of a large volume zero boil-off liquid xenon storage system for muon rare decay experiment (MEG), , Cryogenics
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2010, Article, A limit for the mu -> e gamma decay from the MEG experiment, , Nuclear Physics B
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A search for the decay mu -> e gamma, performed at PSI and
based on data from the initial three months of operation of the MEG
experiment, yields an upper limit
BR(mu -> e gamma) < 2.8 x 10**-11 (90% C.L.).
Positrons and photons from ~ 10**14 stopped mu-decays
were measured by a superconducting positron spectrometer and a
900 litre liquid xenon photon detector.
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2010, Article, Application of the DRS Chip for Fast Waveform Digitizing , , NIMA
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