2018
The Mu2e undoped CsI crystal calorimeter
Atanov N, Baranov V, Budagov J, Cervelli F, Colao F, Cordelli M, Corradi G, Davydov Y, Di Falco S, Diociaiuti E, Donati S, Donghia R, Echenard B, Giovannella S, Glagolev V, Grancagnolo F, Happacher F, Hitlin D, Martini M, Miscetti S, Miyashita T, Morescalchi L, Murat P, Pedreschi E, Pezzullo G, Porter F, Raffaelli F, Ricci M, Saputi A, Sarra I, Spinella F, Tassielli G, Tereshchenko V, Usubov Z, Zhu R. The Mu2e undoped CsI crystal calorimeter. Journal Of Instrumentation 2018, 13: c02037-c02037. DOI: 10.1088/1748-0221/13/02/c02037.Peer-Reviewed Original ResearchMu2e experimentExcellent particle identification capabilitiesParticle identification capabilitiesPure CsI crystalsAtomic fieldCosmic raysCrystal calorimeterEnergy resolutionElectron beamElectromagnetic calorimeterReadout electronicsCsI crystalsSiPM arrayTrack reconstructionIdentification capabilitySiPMsCrystalsSmall-scale prototypeCalorimeterMu2eMuonsFrascatiScale prototypeElectronsFermilab
2017
The Mu2e experiment at Fermilab: a search for lepton flavor violation
Pezzullo G, Collaboration M. The Mu2e experiment at Fermilab: a search for lepton flavor violation. Nuclear And Particle Physics Proceedings 2017, 285: 3-7. DOI: 10.1016/j.nuclphysbps.2017.03.002.Peer-Reviewed Original Research
2014
Cosmic background rejection by means of the calorimeter in the Mu2e experiment at Fermilab
Pezzullo G, Murat P, Sarra I, Lucà A, group M. Cosmic background rejection by means of the calorimeter in the Mu2e experiment at Fermilab. Nuclear And Particle Physics Proceedings 2014, 248: 143-145. DOI: 10.1016/j.nuclphysbps.2014.02.030.Peer-Reviewed Original ResearchThe LYSO crystal calorimeter for the Mu2e experiment
Pezzullo G, Budagov J, Carosi R, Cervelli F, Cheng C, Cordelli M, Corradi G, Davydov Y, Echenard B, Giovannella S, Glagolev V, Happacher F, Hitlin D, Luca A, Martini M, Miscetti S, Murat P, Ongmonkolkul P, Porter F, Saputi A, Sarra I, Spinella F, Stomaci V, Tassielli G. The LYSO crystal calorimeter for the Mu2e experiment. Journal Of Instrumentation 2014, 9: c03018-c03018. DOI: 10.1088/1748-0221/9/03/c03018.Peer-Reviewed Original ResearchElectromagnetic calorimeterMu2e experimentNeutrino-less conversionElectron momentumElectron energyMagnetic spectrometerCrystal calorimeterDetector apparatusAluminum nucleiIndependent measurementsCandidate tracksUpper limitMu2eMuonsElectronsFermilabC.L.CalorimeterMeasurementsSpectrometerMomentumEnergyPresent resultsNucleusExperiments
2013
The calorimeter project for the Mu2e experiment
Budagov J, Carosi R, Cervelli F, Cheng C, Cordelli M, Davydov Y, Downie E, Echenard B, Giovannella S, Glagolev V, Happacher F, Hitlin D, Lucà A, Miscetti S, Ongmonkolkul P, Onorato G, Otte P, Pezzullo G, Pileggi G, Porter F, Saputi A, Sarra I, Tassielli G, Thomas A. The calorimeter project for the Mu2e experiment. Nuclear Instruments And Methods In Physics Research Section A Accelerators Spectrometers Detectors And Associated Equipment 2013, 718: 56-59. DOI: 10.1016/j.nima.2012.11.177.Peer-Reviewed Original ResearchMu2e experimentHigh radiation dose environmentAxial magnetic fieldYears of runningMonochromatic electronsNeutrinoless conversionMomentum determinationRest massCrystal calorimeterPhoton facilityConversion electronsCalorimeter prototypePhoton beamsNegative muonsVacuum enclosureLepton flavorMagnetic fieldMuonsPotential backgroundElectronsStrong suppressionBeamTracker systemIndependent triggersFermilab