2024
Developing an alternative calorimeter solution for the future Muon Collider: The Crilin design
Cantone C, Cemmi A, Ceravolo S, Ciccarella V, Colao F, Di Meco E, Di Sarcina I, Diociaiuti E, Gargiulo R, Gianotti P, Giraldin C, Leonardi E, Lucchesi D, Moulson M, Paesani D, Pastrone N, Pezzullo G, Saputi A, Sarra I, Scifo J, Sestini L, Soldani M, Tagnani D, Verna A, Zuliani D. Developing an alternative calorimeter solution for the future Muon Collider: The Crilin design. Nuclear Instruments And Methods In Physics Research Section A Accelerators Spectrometers Detectors And Associated Equipment 2024, 1069: 169973. DOI: 10.1016/j.nima.2024.169973.Peer-Reviewed Original ResearchBeam-induced backgroundMuon colliderElectromagnetic calorimeterSilicon photo-multipliersBeam Test FacilityExcellent time resolutionBeam testFuture collidersGeV electronsMeV electronsPhoto-multipliersRadiation toleranceIrradiation campaignColliderPbF 2Time resolutionLead fluorideMuonBeamCalorimeterElectronLongitudinal segmentsGeVMeVTest facilityResearch and Development Status for an Innovative Crystal Calorimeter for the Future Muon Collider
Cantone C, Ceravolo S, Colao F, Di Meco E, Diociaiuti E, Frank I, Gianotti P, Gargiulo R, Leonardi E, Lucchesi D, Martellotti S, Moulson M, Paesani D, Pastrone N, Pezzullo G, Saputi A, Sarra I, Sestini L, Tagnani D. Research and Development Status for an Innovative Crystal Calorimeter for the Future Muon Collider. IEEE Transactions On Nuclear Science 2024, 71: 1116-1123. DOI: 10.1109/tns.2024.3364771.Peer-Reviewed Original ResearchBeam-induced backgroundSuperior energy resolutionEvent reconstruction algorithmsBeam Test FacilityHarsh radiation environmentLead fluoride crystalsMuon colliderCrystal calorimeterEnergy resolutionElectromagnetic calorimeterEnergy precisionMeV electronsSilicon photomultipliersNeutron fluxIonizing doseRadiation environmentRadiation toleranceIrradiation campaignDesign detectorsFluoride crystalsMuonBeam testHigher granularityTest beamParticle jets
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 capability