2022
Mu2e DAQ and slow control systems
Gioiosa A, Bonventre R, Donati S, Flumerfelt E, Horton-Smith G, Morescalchi L, O’Dell V, Pedreschi E, Pezzullo G, Spinella F, Uplegger L, Rivera R. Mu2e DAQ and slow control systems. EPJ Web Of Conferences 2022, 262: 01011. DOI: 10.1051/epjconf/202226201011.Peer-Reviewed Original ResearchDetector Control SystemOpen-source platformDCS systemWeb browserControl systemData streamsSource platformComputing CenterSoftware suiteEvent transferData acquisition systemSystem solutionData fluxCosmic ray veto systemAcquisition systemFermilab Muon CampusFilter algorithmArt analysisPrototypeDAQNeutrinoless conversionVeto systemMu2e experimentBrowserExperimental physics
2021
Prototype Data Acquisition and Slow Control Systems for the Mu2e Experiment
Gioiosa A, Bonventre R, Donati S, Flumerfelt E, Horton-Smith G, Morescalchi L, O’Dell V, Pedreschi E, Pezzullo G, Spinella F, Uplegger L, Rivera R. Prototype Data Acquisition and Slow Control Systems for the Mu2e Experiment. IEEE Transactions On Nuclear Science 2021, 68: 1862-1868. DOI: 10.1109/tns.2021.3094130.Peer-Reviewed Original ResearchDetector Control SystemMu2e experimentPeripheral component interconnect express (PCIe) busCosmic ray veto systemOpen-source platformFermilab Muon CampusHigh energy collidersPrototype data acquisitionWeb browserControl systemData streamsSource platformComputing CenterNeutrinoless conversionNew physicsTDAQ systemSoftware suiteVeto systemEvent transferSlow control systemData acquisition systemExperimental physicsDetector subsystemsAluminum nucleiDirect search
2020
Construction status of the Mu2e crystal calorimeter
Atanov N, Baranov V, Bloise C, Budagov J, Cervelli F, Colao F, Cordelli M, Corradi M, Davydov Y, Di Falco S, Diociaiuti E, Donati S, Donghia R, Echenard B, Ferrari C, Giovannella S, Glagolev V, Grancagnolo F, Hampai D, Happacher F, Hitlin D, Marini A, Martini M, Miscetti S, Miyashita T, Morescalchi L, Murat P, Pasciuto D, Pedreschi E, Pezzullo G, Porter F, Raffaelli F, Saputi A, Sarra I, Spinella F, Tassielli G, Tereshchenko V, Usubov Z, Vasilyev I, Zanetti A, Zhu R. Construction status of the Mu2e crystal calorimeter. Journal Of Instrumentation 2020, 15: c09035-c09035. DOI: 10.1088/1748-0221/15/09/c09035.Peer-Reviewed Original ResearchExcellent particle identification capabilitiesNeutrino-less conversionParticle identification capabilitiesTrack reconstruction capabilityPure CsI crystalsCosmic raysCrystal calorimeterEnergy resolutionElectron beamMu2e experimentLarge acceptanceMeV electronsElectromagnetic calorimeterNegative muonsPosition resolutionLepton flavorAluminum nucleiCsI crystalsTime resolutionCalorimeter designModule 0Mm2 dimensionsLarge-scale prototypeConstruction statusIdentification capabilityThe Mu2e e.m. Calorimeter: Crystals and SiPMs Production Status
Atanov N, Baranov V, Budagov J, Caiulo D, Cervelli F, Colao F, Cordelli M, Corradi M, 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, Vasilyev I, Zhu R. The Mu2e e.m. Calorimeter: Crystals and SiPMs Production Status. IEEE Transactions On Nuclear Science 2020, 67: 978-982. DOI: 10.1109/tns.2020.2988422.Peer-Reviewed Original ResearchCrystal readoutExcellent particle identification capabilitiesParticle identification capabilitiesNeutrino-less conversionTrack reconstruction capabilityBeam Test FacilityCosmic raysEnergy resolutionMu2e experimentLarge acceptanceElectromagnetic calorimeterSilicon photomultipliersNegative muonsPosition resolutionLepton flavorAluminum nucleiTime resolutionCalorimeter designMm2 dimensionsLarge-scale prototypeIdentification capabilityMeVElectronsReconstruction capabilitiesReadoutDesign and status of the Mu2e crystal calorimeter
Atanov N, Baranov V, Bloise C, Budagov J, Cervelli F, Ceravolo S, Colao F, Cordelli M, Corradi G, Davydov Y, Di Falco S, Diociaiuti E, Donati S, Donghia R, Echenard B, Ferrari C, Giovannella S, Glagolev V, Grancagnolo F, Hampai D, Happacher F, Hitlin D, Martini M, Miscetti S, Miyashita T, Morescalchi L, Murat P, Pasciuto D, Pedreschi E, Pezzullo G, Porter F, Raffaelli F, Saputi A, Sarra I, Spinella F, Tassielli G, Tereshchenko V, Usubov Z, Vasilyev I, Zanetti A, Zhu R. Design and status of the Mu2e crystal calorimeter. Nuclear Instruments And Methods In Physics Research Section A Accelerators Spectrometers Detectors And Associated Equipment 2020, 958: 162140. DOI: 10.1016/j.nima.2019.04.094.Peer-Reviewed Original ResearchLarge area silicon photomultipliersExcellent particle identification capabilitiesParticle identification capabilitiesMono-energetic electronsTrack reconstruction capabilityPure CsI crystalsCoherent neutrinoCosmic raysNew physicsCrystal calorimeterCoulomb fieldElectron beamMu2e experimentElectron conversionElectromagnetic calorimeterSilicon photomultipliersClear signatureLepton flavorAluminum nucleiCsI crystalsStandard modelSearch sensitivityDistinctive signatureOrders of magnitudeLarge-scale prototype
2018
Final design and current status of the Mu2e crystal calorimeter
Atanov N, Baranov V, Budagov J, Cervelli F, Colao F, Diociaiuti E, Cordelli M, Corradi G, Davydov Y, Donghia R, Di Falco S, Echenard B, Morescalchi L, 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, Zhu R. Final design and current status of the Mu2e crystal calorimeter. 2018, 00: 1-4. DOI: 10.1109/nssmic.2018.8824316.Peer-Reviewed Original ResearchMu2e experimentNeutrino-less conversionMono-energetic electronsSingle event sensitivityFront-end electronicsRest massCrystal calorimeterCalorimeter prototypeParticle identificationLaboratory searchesSilicon photomultipliersNegative muonsAluminum nucleiCsI crystalsEvent sensitivityOrders of magnitudeElectronsPrevious experimentsCrystalsCalorimeterMuonsINFNPhotomultipliersDetectorPhotosensorsQuality Assurance on Undoped CsI Crystals for the Mu2e Experiment
Atanov N, Baranov V, Budagov J, Davydov Y, Glagolev V, Tereshchenko V, Usubov Z, Cervelli F, Di Falco S, Donati S, Morescalchi L, Pedreschi E, Pezzullo G, Raffaelli F, Spinella F, Colao F, Cordelli M, Corradi G, Diociaiuti E, Donghia R, Giovannella S, Happacher F, Martini M, Miscetti S, Ricci M, Saputi A, Sarra I, Echenard B, Hitlin D, Hu C, Miyashita T, Porter F, Zhang L, Zhu R, Grancagnolo F, Tassielli G, Murat P. Quality Assurance on Undoped CsI Crystals for the Mu2e Experiment. IEEE Transactions On Nuclear Science 2018, 65: 752-757. DOI: 10.1109/tns.2017.2786081.Peer-Reviewed Original ResearchThe 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 prototypeElectronsFermilabDesign and Status of the Mu2e Crystal Calorimeter
Atanov N, Baranov V, Budagov J, Davydov Y, Glagolev V, Tereshchenko V, Usubov Z, Cervelli F, Di Falco S, Donati S, Morescalchi L, Pedreschi E, Pezzullo G, Raffaelli F, Spinella F, Colao F, Cordelli M, Corradi G, Diociaiuti E, Donghia R, Giovannella S, Happacher F, Martini M, Miscetti S, Ricci M, Saputi A, Sarra I, Echenard B, Hitlin D, Miyashita T, Porter F, Zhu R, Grancagnolo F, Tassielli G, Murat P. Design and Status of the Mu2e Crystal Calorimeter. IEEE Transactions On Nuclear Science 2018, 65: 2073-2080. DOI: 10.1109/tns.2018.2790702.Peer-Reviewed Original ResearchEnergy resolutionParticle identification capabilitiesHarsh radiation environmentBeam Test FacilityAxial magnetic fieldLarge-area arraysCosmic raysNew physicsMonoenergetic electronsCrystal calorimeterRest massEnergy rangeElectron beamMu2e experimentElectromagnetic calorimeterLarge acceptanceRadiation environmentSilicon photomultipliersNegative muonsPosition resolutionLepton flavorAluminum nucleiMagnetic fieldNormal incidenceTime resolution
2017
Quality Assurance on a custom SiPMs array for the Mu2e experiment
Atanov N, Baranov V, Budagov J, Davydov Y, Glagolev V, Tereshchenko V, Usubov Z, Cervelli F, Di Falco S, Donati S, Morescalchi L, Pedreschi E, Pezzullo G, Raffaelli F, Spinella F, Colao F, Cordelli M, Corradi G, Diociaiuti E, Donghia R, Giovannella S, Happacher F, Martini M, Miscetti S, Ricci M, Saputi A, Sarra I, Echenard B, Hitlin D, Miyashita T, Porter F, Zhu R, Grancagnolo F, Tassielli G, Murat P. Quality Assurance on a custom SiPMs array for the Mu2e experiment. 2017, 00: 1-4. DOI: 10.1109/nssmic.2017.8533119.Peer-Reviewed Original ResearchThe Mu2e crystal calorimeter
Atanov N, Budagov J, Cervelli F, Colao F, Cordelli M, Corradi G, Danè E, Davidov 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, Saputi A, Sarra I, Spinella F, Tassielli G. The Mu2e crystal calorimeter. Journal Of Instrumentation 2017, 12: p09017-p09017. DOI: 10.1088/1748-0221/12/09/p09017.Peer-Reviewed Original ResearchCharged lepton flavor violationNegative muonsNew physicsCharged lepton flavor violating processesLepton flavor violationMuon rest massNeutrino-less conversionProbe new physicsTwo-body decaysHigh energy collidersMono-energetic electronsStraw tube trackerCrystal electromagnetic calorimeterYears of runningFlavor violationMu2e detectorEnergy collidersMu2e experimentCosmic raysDetector solenoidRest massElectromagnetic calorimeterPulsed beamMu2eMuonThe 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 ResearchComponents Qualification for a Possible use in the Mu2e Calorimeter Waveform Digitizer
Di Falco S, Donati S, Morescalchi L, Pedreschi E, Pezzullo G, Spinella F. Components Qualification for a Possible use in the Mu2e Calorimeter Waveform Digitizer. Journal Of Instrumentation 2017, 12: c03088-c03088. DOI: 10.1088/1748-0221/12/03/c03088.Peer-Reviewed Original ResearchMagnetic fieldWaveform digitizerCrystal electromagnetic calorimeterHigh magnetic fieldsCoulomb fieldMu2e experimentStraw Tube TrackerElectromagnetic calorimeterRadiation hardnessParticle fluxQualification campaignHarsh experimental conditionsMuonsInitial rough estimateDigital electronicsHigh fluxComponent qualificationQualification procedureCommercial devicesFlux simulationsFirst prototypeFieldElectronsNeutronsExperimental resultsThe calorimeter of the Mu2e experiment at Fermilab
Atanov N, Baranov V, Budagov J, Cervelli F, Colao F, Cordelli M, Corradi G, Dané E, Davydov Y, Di Falco S, Diociaiuti E, Donati S, Donghia R, Echenard B, Flood K, Giovannella S, Glagolev V, Grancagnolo F, Happacher F, Hitlin D, Martini M, Miscetti S, Miyashita T, Morescalchi L, Murat P, Pezzullo G, Porter F, Raffaelli F, Radicioni T, Ricci M, Saputi A, Sarra I, Spinella F, Tassielli G, Tereshchenko V, Usubov Z, Zhu R. The calorimeter of the Mu2e experiment at Fermilab. Journal Of Instrumentation 2017, 12: c01061-c01061. DOI: 10.1088/1748-0221/12/01/c01061.Peer-Reviewed Original ResearchCharged Lepton Flavor ViolationMu2e experimentCosmic ray veto systemCosmic ray backgroundCurrent experimental sensitivityHarsh radiation environmentLepton flavor violationCurrent standard modelRay backgroundMuonic atomsElectron momentumNew physicsTime of flightCrystal calorimeterVeto systemStraw Tube TrackerElectron conversionExperimental sensitivityRadiation environmentData takingFlavor violationMagnetic fieldBackground eventsConverted electronsStandard model
2016
Design and status of the Mu2e electromagnetic calorimeter
Atanov N, Baranov V, Budagov J, Carosi R, Cervelli F, Colao F, Cordelli M, Corradi G, Dané E, Davydov Y, Di Falco S, Donati S, Donghia R, Echenard B, Flood K, Giovannella S, Glagolev V, Grancagnolo F, Happacher F, Hitlin D, Martini M, Miscetti S, Miyashita T, Morescalchi L, Murat P, Pasciuto D, Pezzullo G, Porter F, Saputi A, Sarra I, Soleti S, Spinella F, Tassielli G, Tereshchenko V, Usubov Z, Zhu R. Design and status of the Mu2e electromagnetic calorimeter. Nuclear Instruments And Methods In Physics Research Section A Accelerators Spectrometers Detectors And Associated Equipment 2016, 824: 695-698. DOI: 10.1016/j.nima.2015.09.074.Peer-Reviewed Original ResearchAvalanche photodiodesCosmic ray veto systemPowerful particle identificationSingle event sensitivityNeutrinoless conversionMonoenergetic electronsCrystal calorimeterEnergy resolutionVeto systemMu2e experimentParticle identificationElectromagnetic calorimeterNegative muonsData takingPrecision trackerBackground tracksBaF2 crystalsTime resolutionFinal stateTrack reconstructionCalorimeter designEvent sensitivityElectronsCrystal matrixSolenoidEnergy and time resolution of a LYSO matrix prototype for the Mu2e experiment
Atanov N, Baranov V, Colao F, Cordelli M, Corradi G, Dané E, Davydov Y, Flood K, Giovannella S, Glagolev V, Happacher F, Hitlin D, Martini M, Miscetti S, Miyashita T, Morescalchi L, Ott P, Pezzullo G, Saputi A, Sarra I, Soleti S, Tassielli G, Tereshchenko V, Thomas A. Energy and time resolution of a LYSO matrix prototype for the Mu2e experiment. Nuclear Instruments And Methods In Physics Research Section A Accelerators Spectrometers Detectors And Associated Equipment 2016, 824: 684-685. DOI: 10.1016/j.nima.2015.09.051.Peer-Reviewed Original ResearchCharacterization of a 5 $5 \times 5$ LYSO Matrix Calorimeter Prototype
Atanov N, Baranov V, Colao F, Cordelli M, Corradi G, Dan E, Davydov Y, Flood K, Giovannella S, Glagolev V, Happacher F, Hitlin D, Martini M, Miscettti S, Miyashita T, Morescalchi L, Ott P, Pezzullo G, Saputi A, Sarra I, Soleti S, Tassielli G, Tereshchenko V, Thomas A. Characterization of a 5 $5 \times 5$ LYSO Matrix Calorimeter Prototype. IEEE Transactions On Nuclear Science 2016, 63: 596-604. DOI: 10.1109/tns.2016.2522818.Peer-Reviewed Original ResearchCalorimeter prototypePhoton beamsEnergy dependenceTime resolutionBeam energy spreadEnergy of particlesLYSO crystal readoutEnergy spreadEnergy rangeEnergy resolutionMu2e experimentCrystal readoutMAMI dataStochastic termBeamConstant termGood agreementAdditional contributionPSEnergyResolutionMeasurementsMAMIFrascatiDependenceMeasurement of time resolution of the Mu2e LYSO calorimeter prototype
Atanov N, Baranov V, Colao F, Cordelli M, Corradi G, Dané E, Davydov Y, Flood K, Giovannella S, Glagolev V, Happacher F, Hitlin D, Martini M, Miscetti S, Miyashita T, Morescalchi L, Pezzullo G, Saputi A, Sarra I, Soleti S, Tassielli G, Tereshchenko V. Measurement of time resolution of the Mu2e LYSO calorimeter prototype. Nuclear Instruments And Methods In Physics Research Section A Accelerators Spectrometers Detectors And Associated Equipment 2016, 812: 104-111. DOI: 10.1016/j.nima.2015.12.055.Peer-Reviewed Original Research
2015
Progress status for the Mu2e calorimeter system
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. Progress status for the Mu2e calorimeter system. Journal Of Physics Conference Series 2015, 587: 012047. DOI: 10.1088/1742-6596/587/1/012047.Peer-Reviewed Original ResearchGood energy resolutionLarge area APDsAxial magnetic fieldMonochromatic electronsNeutrinoless conversionRest massEnergy resolutionConversion electronsMu2e experimentParticle identificationLarge acceptanceNegative muonsPosition resolutionLepton flavorMagnetic fieldBaF2 crystalsHigh Level TriggerTracker systemElectronsCalorimeter systemInner radiusLevel triggerCrystalsCalorimeterMuons
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 Research